MC
df68_499a
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5giraffe".
| Thorret | ||||||||
| Wyvern | ||||||||
| Elwet | ||||||||
| Narloc | ||||||||
| Oclora | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Oclora | ||||||||
| Elwet | ||||||||
| Narloc | ||||||||
| Thorret | ||||||||
| Wyvern | ||||||||
| Oclora | ||||||||
| Narloc | ||||||||
| Elwet | ||||||||
| Thorret | ||||||||
| Wyvern | ||||||||
| Elwet | ||||||||
| Narloc | ||||||||
| Thorret | ||||||||
| Wyvern | ||||||||
| Oclora | ||||||||
| Oclora | ||||||||
| Thorret | ||||||||
| Wyvern | ||||||||
| Elwet | ||||||||
| Narloc | ||||||||
dd73_540c
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5comb".
| Oclora | ||||||||
| Zypher | ||||||||
| Narloc | ||||||||
| Ashen | ||||||||
| Lystra | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Ashen | ||||||||
| Lystra | ||||||||
| Narloc | ||||||||
| Zypher | ||||||||
| Oclora | ||||||||
| Zypher | ||||||||
| Ashen | ||||||||
| Narloc | ||||||||
| Lystra | ||||||||
| Oclora | ||||||||
| Lystra | ||||||||
| Ashen | ||||||||
| Narloc | ||||||||
| Zypher | ||||||||
| Oclora | ||||||||
| Narloc | ||||||||
| Ashen | ||||||||
| Lystra | ||||||||
| Zypher | ||||||||
| Oclora | ||||||||
| Oclora | ||||||||
| Zypher | ||||||||
| Lystra | ||||||||
| Narloc | ||||||||
| Ashen | ||||||||
2b64_a13f
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair3".
| Faylen | ||||||||
| Chimera | ||||||||
| Yawclor | ||||||||
| Oclora | ||||||||
| Thorret | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Faylen | ||||||||
| Yawclor | ||||||||
| Chimera | ||||||||
| Oclora | ||||||||
| Thorret | ||||||||
| Oclora | ||||||||
| Thorret | ||||||||
| Chimera | ||||||||
| Faylen | ||||||||
| Yawclor | ||||||||
| Oclora | ||||||||
| Thorret | ||||||||
| Chimera | ||||||||
| Yawclor | ||||||||
| Faylen | ||||||||
| Chimera | ||||||||
| Yawclor | ||||||||
| Faylen | ||||||||
| Oclora | ||||||||
| Thorret | ||||||||
| Chimera | ||||||||
| Faylen | ||||||||
| Yawclor | ||||||||
| Oclora | ||||||||
| Thorret | ||||||||
af91_65b3
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair3".
| Chimera | ||||||||
| Elwet | ||||||||
| Phoenix | ||||||||
| Inktoad | ||||||||
| Xeraph | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Phoenix | ||||||||
| Chimera | ||||||||
| Elwet | ||||||||
| Inktoad | ||||||||
| Xeraph | ||||||||
| Chimera | ||||||||
| Phoenix | ||||||||
| Elwet | ||||||||
| Inktoad | ||||||||
| Xeraph | ||||||||
| Inktoad | ||||||||
| Xeraph | ||||||||
| Elwet | ||||||||
| Phoenix | ||||||||
| Chimera | ||||||||
| Elwet | ||||||||
| Phoenix | ||||||||
| Chimera | ||||||||
| Inktoad | ||||||||
| Xeraph | ||||||||
| Inktoad | ||||||||
| Xeraph | ||||||||
| Chimera | ||||||||
| Elwet | ||||||||
| Phoenix | ||||||||
572f_542a
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5comb".
| Yawclor | ||||||||
| Chimera | ||||||||
| Inktoad | ||||||||
| Bellen | ||||||||
| Ashen | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Yawclor | ||||||||
| Bellen | ||||||||
| Chimera | ||||||||
| Inktoad | ||||||||
| Ashen | ||||||||
| Ashen | ||||||||
| Bellen | ||||||||
| Yawclor | ||||||||
| Chimera | ||||||||
| Inktoad | ||||||||
| Bellen | ||||||||
| Inktoad | ||||||||
| Chimera | ||||||||
| Yawclor | ||||||||
| Ashen | ||||||||
| Yawclor | ||||||||
| Bellen | ||||||||
| Inktoad | ||||||||
| Chimera | ||||||||
| Ashen | ||||||||
| Ashen | ||||||||
| Yawclor | ||||||||
| Bellen | ||||||||
| Chimera | ||||||||
| Inktoad | ||||||||
ea95_2f77
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair1".
| Chimera | ||||||||
| Wyvern | ||||||||
| Unicorn | ||||||||
| Yawclor | ||||||||
| Oclora | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Chimera | ||||||||
| Wyvern | ||||||||
| Yawclor | ||||||||
| Oclora | ||||||||
| Unicorn | ||||||||
| Chimera | ||||||||
| Wyvern | ||||||||
| Oclora | ||||||||
| Unicorn | ||||||||
| Yawclor | ||||||||
| Unicorn | ||||||||
| Yawclor | ||||||||
| Oclora | ||||||||
| Chimera | ||||||||
| Wyvern | ||||||||
| Unicorn | ||||||||
| Oclora | ||||||||
| Yawclor | ||||||||
| Chimera | ||||||||
| Wyvern | ||||||||
| Chimera | ||||||||
| Wyvern | ||||||||
| Oclora | ||||||||
| Yawclor | ||||||||
| Unicorn | ||||||||
6588_d391
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair3".
| Thorret | ||||||||
| Yawclor | ||||||||
| Kraken | ||||||||
| Dibblet | ||||||||
| Faylen | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Dibblet | ||||||||
| Faylen | ||||||||
| Kraken | ||||||||
| Thorret | ||||||||
| Yawclor | ||||||||
| Dibblet | ||||||||
| Faylen | ||||||||
| Kraken | ||||||||
| Thorret | ||||||||
| Yawclor | ||||||||
| Faylen | ||||||||
| Kraken | ||||||||
| Dibblet | ||||||||
| Thorret | ||||||||
| Yawclor | ||||||||
| Kraken | ||||||||
| Dibblet | ||||||||
| Faylen | ||||||||
| Thorret | ||||||||
| Yawclor | ||||||||
| Dibblet | ||||||||
| Kraken | ||||||||
| Faylen | ||||||||
| Thorret | ||||||||
| Yawclor | ||||||||
7b11_1fb9
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair1".
| Manticore | ||||||||
| Vyrax | ||||||||
| Dibblet | ||||||||
| Elwet | ||||||||
| Xeraph | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Dibblet | ||||||||
| Xeraph | ||||||||
| Elwet | ||||||||
| Manticore | ||||||||
| Vyrax | ||||||||
| Elwet | ||||||||
| Xeraph | ||||||||
| Dibblet | ||||||||
| Manticore | ||||||||
| Vyrax | ||||||||
| Manticore | ||||||||
| Vyrax | ||||||||
| Elwet | ||||||||
| Xeraph | ||||||||
| Dibblet | ||||||||
| Manticore | ||||||||
| Vyrax | ||||||||
| Dibblet | ||||||||
| Xeraph | ||||||||
| Elwet | ||||||||
| Dibblet | ||||||||
| Elwet | ||||||||
| Xeraph | ||||||||
| Manticore | ||||||||
| Vyrax | ||||||||
738f_6bd8
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair2".
| Manticore | ||||||||
| Rynoth | ||||||||
| Lystra | ||||||||
| Dibblet | ||||||||
| Inktoad | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Manticore | ||||||||
| Rynoth | ||||||||
| Lystra | ||||||||
| Dibblet | ||||||||
| Inktoad | ||||||||
| Lystra | ||||||||
| Manticore | ||||||||
| Rynoth | ||||||||
| Dibblet | ||||||||
| Inktoad | ||||||||
| Dibblet | ||||||||
| Inktoad | ||||||||
| Lystra | ||||||||
| Manticore | ||||||||
| Rynoth | ||||||||
| Dibblet | ||||||||
| Inktoad | ||||||||
| Manticore | ||||||||
| Rynoth | ||||||||
| Lystra | ||||||||
f5e6_e35a
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair3".
| Phoenix | ||||||||
| Jackalope | ||||||||
| Wyvern | ||||||||
| Elwet | ||||||||
| Rynoth | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Phoenix | ||||||||
| Jackalope | ||||||||
| Wyvern | ||||||||
| Elwet | ||||||||
| Rynoth | ||||||||
| Elwet | ||||||||
| Rynoth | ||||||||
| Phoenix | ||||||||
| Jackalope | ||||||||
| Wyvern | ||||||||
| Elwet | ||||||||
| Rynoth | ||||||||
| Phoenix | ||||||||
| Jackalope | ||||||||
| Wyvern | ||||||||
| Phoenix | ||||||||
| Wyvern | ||||||||
| Jackalope | ||||||||
| Elwet | ||||||||
| Rynoth | ||||||||
| Jackalope | ||||||||
| Phoenix | ||||||||
| Wyvern | ||||||||
| Elwet | ||||||||
| Rynoth | ||||||||
b628_70d7
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair1".
| Gorret | ||||||||
| Xeraph | ||||||||
| Kraken | ||||||||
| Manticore | ||||||||
| Inktoad | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Kraken | ||||||||
| Inktoad | ||||||||
| Manticore | ||||||||
| Gorret | ||||||||
| Xeraph | ||||||||
| Gorret | ||||||||
| Xeraph | ||||||||
| Inktoad | ||||||||
| Kraken | ||||||||
| Manticore | ||||||||
| Gorret | ||||||||
| Xeraph | ||||||||
| Inktoad | ||||||||
| Manticore | ||||||||
| Kraken | ||||||||
| Gorret | ||||||||
| Xeraph | ||||||||
| Inktoad | ||||||||
| Kraken | ||||||||
| Manticore | ||||||||
940c_fe6f
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair1".
| Yawclor | ||||||||
| Dibblet | ||||||||
| Zypher | ||||||||
| Chimera | ||||||||
| Unicorn | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Chimera | ||||||||
| Unicorn | ||||||||
| Dibblet | ||||||||
| Yawclor | ||||||||
| Zypher | ||||||||
| Chimera | ||||||||
| Unicorn | ||||||||
| Dibblet | ||||||||
| Yawclor | ||||||||
| Zypher | ||||||||
| Chimera | ||||||||
| Unicorn | ||||||||
| Dibblet | ||||||||
| Zypher | ||||||||
| Yawclor | ||||||||
| Yawclor | ||||||||
| Zypher | ||||||||
| Dibblet | ||||||||
| Chimera | ||||||||
| Unicorn | ||||||||
e090_879e
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair2".
| Kraken | ||||||||
| Phoenix | ||||||||
| Hydra | ||||||||
| Elwet | ||||||||
| Quokka | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Kraken | ||||||||
| Phoenix | ||||||||
| Elwet | ||||||||
| Quokka | ||||||||
| Hydra | ||||||||
| Hydra | ||||||||
| Elwet | ||||||||
| Quokka | ||||||||
| Kraken | ||||||||
| Phoenix | ||||||||
| Elwet | ||||||||
| Quokka | ||||||||
| Hydra | ||||||||
| Kraken | ||||||||
| Phoenix | ||||||||
33f5_e070
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair1".
| Elwet | ||||||||
| Manticore | ||||||||
| Bellen | ||||||||
| Unicorn | ||||||||
| Narloc | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Elwet | ||||||||
| Manticore | ||||||||
| Bellen | ||||||||
| Narloc | ||||||||
| Unicorn | ||||||||
| Elwet | ||||||||
| Manticore | ||||||||
| Narloc | ||||||||
| Bellen | ||||||||
| Unicorn | ||||||||
| Bellen | ||||||||
| Narloc | ||||||||
| Unicorn | ||||||||
| Elwet | ||||||||
| Manticore | ||||||||
| Narloc | ||||||||
| Unicorn | ||||||||
| Bellen | ||||||||
| Elwet | ||||||||
| Manticore | ||||||||
| Elwet | ||||||||
| Manticore | ||||||||
| Narloc | ||||||||
| Unicorn | ||||||||
| Bellen | ||||||||
81f4_0495
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair2".
| Narloc | ||||||||
| Rynoth | ||||||||
| Bellen | ||||||||
| Phoenix | ||||||||
| Zypher | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Phoenix | ||||||||
| Bellen | ||||||||
| Zypher | ||||||||
| Narloc | ||||||||
| Rynoth | ||||||||
| Bellen | ||||||||
| Phoenix | ||||||||
| Zypher | ||||||||
| Narloc | ||||||||
| Rynoth | ||||||||
| Narloc | ||||||||
| Rynoth | ||||||||
| Zypher | ||||||||
| Bellen | ||||||||
| Phoenix | ||||||||
| Narloc | ||||||||
| Rynoth | ||||||||
| Zypher | ||||||||
| Bellen | ||||||||
| Phoenix | ||||||||
611f_f5b4
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair1".
| Rynoth | ||||||||
| Xeraph | ||||||||
| Faylen | ||||||||
| Vyrax | ||||||||
| Quokka | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Rynoth | ||||||||
| Xeraph | ||||||||
| Quokka | ||||||||
| Vyrax | ||||||||
| Faylen | ||||||||
| Rynoth | ||||||||
| Xeraph | ||||||||
| Faylen | ||||||||
| Quokka | ||||||||
| Vyrax | ||||||||
| Quokka | ||||||||
| Vyrax | ||||||||
| Faylen | ||||||||
| Rynoth | ||||||||
| Xeraph | ||||||||
| Rynoth | ||||||||
| Xeraph | ||||||||
| Vyrax | ||||||||
| Faylen | ||||||||
| Quokka | ||||||||
| Rynoth | ||||||||
| Xeraph | ||||||||
| Quokka | ||||||||
| Faylen | ||||||||
| Vyrax | ||||||||
a2ae_8eae
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5giraffe".
| Sphinx | ||||||||
| Narloc | ||||||||
| Quokka | ||||||||
| Elwet | ||||||||
| Gorret | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Narloc | ||||||||
| Quokka | ||||||||
| Elwet | ||||||||
| Gorret | ||||||||
| Sphinx | ||||||||
| Narloc | ||||||||
| Quokka | ||||||||
| Elwet | ||||||||
| Gorret | ||||||||
| Sphinx | ||||||||
| Quokka | ||||||||
| Narloc | ||||||||
| Elwet | ||||||||
| Gorret | ||||||||
| Sphinx | ||||||||
| Elwet | ||||||||
| Gorret | ||||||||
| Narloc | ||||||||
| Quokka | ||||||||
| Sphinx | ||||||||
e30d_1316
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5giraffe".
| Vyrax | ||||||||
| Yawclor | ||||||||
| Jackalope | ||||||||
| Wyvern | ||||||||
| Oclora | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Vyrax | ||||||||
| Yawclor | ||||||||
| Jackalope | ||||||||
| Wyvern | ||||||||
| Oclora | ||||||||
| Oclora | ||||||||
| Jackalope | ||||||||
| Wyvern | ||||||||
| Vyrax | ||||||||
| Yawclor | ||||||||
| Oclora | ||||||||
| Jackalope | ||||||||
| Wyvern | ||||||||
| Vyrax | ||||||||
| Yawclor | ||||||||
d634_356f
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5comb".
| Manticore | ||||||||
| Vyrax | ||||||||
| Unicorn | ||||||||
| Sphinx | ||||||||
| Hydra | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Sphinx | ||||||||
| Unicorn | ||||||||
| Manticore | ||||||||
| Vyrax | ||||||||
| Hydra | ||||||||
| Vyrax | ||||||||
| Manticore | ||||||||
| Unicorn | ||||||||
| Sphinx | ||||||||
| Hydra | ||||||||
| Hydra | ||||||||
| Sphinx | ||||||||
| Manticore | ||||||||
| Unicorn | ||||||||
| Vyrax | ||||||||
| Hydra | ||||||||
| Manticore | ||||||||
| Unicorn | ||||||||
| Vyrax | ||||||||
| Sphinx | ||||||||
| Manticore | ||||||||
| Vyrax | ||||||||
| Sphinx | ||||||||
| Unicorn | ||||||||
| Hydra | ||||||||
2f78_1297
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5comb".
| Dibblet | ||||||||
| Inktoad | ||||||||
| Jackalope | ||||||||
| Vyrax | ||||||||
| Gorret | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Dibblet | ||||||||
| Inktoad | ||||||||
| Jackalope | ||||||||
| Vyrax | ||||||||
| Gorret | ||||||||
| Dibblet | ||||||||
| Jackalope | ||||||||
| Inktoad | ||||||||
| Vyrax | ||||||||
| Gorret | ||||||||
| Gorret | ||||||||
| Dibblet | ||||||||
| Inktoad | ||||||||
| Jackalope | ||||||||
| Vyrax | ||||||||
| Vyrax | ||||||||
| Dibblet | ||||||||
| Inktoad | ||||||||
| Jackalope | ||||||||
| Gorret | ||||||||
| Inktoad | ||||||||
| Jackalope | ||||||||
| Dibblet | ||||||||
| Vyrax | ||||||||
| Gorret | ||||||||
bc79_ade7
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair1".
| Chimera | ||||||||
| Jackalope | ||||||||
| Kraken | ||||||||
| Hydra | ||||||||
| Vyrax | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Chimera | ||||||||
| Kraken | ||||||||
| Jackalope | ||||||||
| Hydra | ||||||||
| Vyrax | ||||||||
| Chimera | ||||||||
| Jackalope | ||||||||
| Kraken | ||||||||
| Hydra | ||||||||
| Vyrax | ||||||||
| Hydra | ||||||||
| Vyrax | ||||||||
| Kraken | ||||||||
| Chimera | ||||||||
| Jackalope | ||||||||
| Jackalope | ||||||||
| Chimera | ||||||||
| Kraken | ||||||||
| Hydra | ||||||||
| Vyrax | ||||||||
9f6c_1707
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5giraffe".
| Vyrax | ||||||||
| Jackalope | ||||||||
| Manticore | ||||||||
| Wyvern | ||||||||
| Yawclor | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Wyvern | ||||||||
| Yawclor | ||||||||
| Jackalope | ||||||||
| Manticore | ||||||||
| Vyrax | ||||||||
| Jackalope | ||||||||
| Manticore | ||||||||
| Wyvern | ||||||||
| Yawclor | ||||||||
| Vyrax | ||||||||
| Jackalope | ||||||||
| Manticore | ||||||||
| Wyvern | ||||||||
| Yawclor | ||||||||
| Vyrax | ||||||||
| Wyvern | ||||||||
| Yawclor | ||||||||
| Jackalope | ||||||||
| Manticore | ||||||||
| Vyrax | ||||||||
a012_c9a5
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair2".
| Hydra | ||||||||
| Unicorn | ||||||||
| Oclora | ||||||||
| Chimera | ||||||||
| Thorret | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Chimera | ||||||||
| Thorret | ||||||||
| Oclora | ||||||||
| Hydra | ||||||||
| Unicorn | ||||||||
| Oclora | ||||||||
| Chimera | ||||||||
| Thorret | ||||||||
| Hydra | ||||||||
| Unicorn | ||||||||
| Hydra | ||||||||
| Unicorn | ||||||||
| Chimera | ||||||||
| Thorret | ||||||||
| Oclora | ||||||||
7c79_073b
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5comb".
| Inktoad | ||||||||
| Rynoth | ||||||||
| Thorret | ||||||||
| Yawclor | ||||||||
| Dibblet | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Thorret | ||||||||
| Inktoad | ||||||||
| Rynoth | ||||||||
| Yawclor | ||||||||
| Dibblet | ||||||||
| Yawclor | ||||||||
| Rynoth | ||||||||
| Thorret | ||||||||
| Inktoad | ||||||||
| Dibblet | ||||||||
| Inktoad | ||||||||
| Rynoth | ||||||||
| Thorret | ||||||||
| Yawclor | ||||||||
| Dibblet | ||||||||
| Dibblet | ||||||||
| Yawclor | ||||||||
| Rynoth | ||||||||
| Inktoad | ||||||||
| Thorret | ||||||||
| Dibblet | ||||||||
| Thorret | ||||||||
| Yawclor | ||||||||
| Inktoad | ||||||||
| Rynoth | ||||||||
4066_5828
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5giraffe".
| Faylen | ||||||||
| Sphinx | ||||||||
| Vyrax | ||||||||
| Wyvern | ||||||||
| Ashen | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Ashen | ||||||||
| Vyrax | ||||||||
| Wyvern | ||||||||
| Faylen | ||||||||
| Sphinx | ||||||||
| Vyrax | ||||||||
| Wyvern | ||||||||
| Faylen | ||||||||
| Sphinx | ||||||||
| Ashen | ||||||||
| Faylen | ||||||||
| Sphinx | ||||||||
| Vyrax | ||||||||
| Wyvern | ||||||||
| Ashen | ||||||||
| Ashen | ||||||||
| Faylen | ||||||||
| Vyrax | ||||||||
| Wyvern | ||||||||
| Sphinx | ||||||||
5189_acd5
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5giraffe".
| Quokka | ||||||||
| Wyvern | ||||||||
| Lystra | ||||||||
| Unicorn | ||||||||
| Sphinx | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Sphinx | ||||||||
| Lystra | ||||||||
| Unicorn | ||||||||
| Quokka | ||||||||
| Wyvern | ||||||||
| Lystra | ||||||||
| Unicorn | ||||||||
| Quokka | ||||||||
| Wyvern | ||||||||
| Sphinx | ||||||||
| Lystra | ||||||||
| Unicorn | ||||||||
| Quokka | ||||||||
| Wyvern | ||||||||
| Sphinx | ||||||||
| Quokka | ||||||||
| Wyvern | ||||||||
| Lystra | ||||||||
| Unicorn | ||||||||
| Sphinx | ||||||||
a826_2417
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair3".
| Dibblet | ||||||||
| Wyvern | ||||||||
| Lystra | ||||||||
| Phoenix | ||||||||
| Vyrax | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Lystra | ||||||||
| Phoenix | ||||||||
| Vyrax | ||||||||
| Dibblet | ||||||||
| Wyvern | ||||||||
| Dibblet | ||||||||
| Wyvern | ||||||||
| Lystra | ||||||||
| Phoenix | ||||||||
| Vyrax | ||||||||
| Lystra | ||||||||
| Vyrax | ||||||||
| Phoenix | ||||||||
| Dibblet | ||||||||
| Wyvern | ||||||||
| Lystra | ||||||||
| Phoenix | ||||||||
| Vyrax | ||||||||
| Dibblet | ||||||||
| Wyvern | ||||||||
| Vyrax | ||||||||
| Lystra | ||||||||
| Phoenix | ||||||||
| Dibblet | ||||||||
| Wyvern | ||||||||
6459_c181
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5comb".
| Sphinx | ||||||||
| Wyvern | ||||||||
| Bellen | ||||||||
| Vyrax | ||||||||
| Chimera | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Vyrax | ||||||||
| Bellen | ||||||||
| Wyvern | ||||||||
| Sphinx | ||||||||
| Chimera | ||||||||
| Chimera | ||||||||
| Bellen | ||||||||
| Wyvern | ||||||||
| Vyrax | ||||||||
| Sphinx | ||||||||
| Bellen | ||||||||
| Vyrax | ||||||||
| Wyvern | ||||||||
| Sphinx | ||||||||
| Chimera | ||||||||
| Vyrax | ||||||||
| Wyvern | ||||||||
| Bellen | ||||||||
| Sphinx | ||||||||
| Chimera | ||||||||
a265_b600
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair1".
| Sphinx | ||||||||
| Xeraph | ||||||||
| Dibblet | ||||||||
| Rynoth | ||||||||
| Vyrax | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Sphinx | ||||||||
| Xeraph | ||||||||
| Rynoth | ||||||||
| Vyrax | ||||||||
| Dibblet | ||||||||
| Rynoth | ||||||||
| Vyrax | ||||||||
| Dibblet | ||||||||
| Sphinx | ||||||||
| Xeraph | ||||||||
| Sphinx | ||||||||
| Xeraph | ||||||||
| Rynoth | ||||||||
| Dibblet | ||||||||
| Vyrax | ||||||||
| Sphinx | ||||||||
| Xeraph | ||||||||
| Dibblet | ||||||||
| Vyrax | ||||||||
| Rynoth | ||||||||
| Dibblet | ||||||||
| Rynoth | ||||||||
| Vyrax | ||||||||
| Sphinx | ||||||||
| Xeraph | ||||||||
2be2_fa94
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair3".
| Elwet | ||||||||
| Jackalope | ||||||||
| Narloc | ||||||||
| Yawclor | ||||||||
| Lystra | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Elwet | ||||||||
| Jackalope | ||||||||
| Lystra | ||||||||
| Narloc | ||||||||
| Yawclor | ||||||||
| Narloc | ||||||||
| Yawclor | ||||||||
| Lystra | ||||||||
| Elwet | ||||||||
| Jackalope | ||||||||
| Elwet | ||||||||
| Jackalope | ||||||||
| Narloc | ||||||||
| Yawclor | ||||||||
| Lystra | ||||||||
| Lystra | ||||||||
| Yawclor | ||||||||
| Narloc | ||||||||
| Elwet | ||||||||
| Jackalope | ||||||||
388c_355b
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair2".
| Jackalope | ||||||||
| Manticore | ||||||||
| Chimera | ||||||||
| Xeraph | ||||||||
| Dibblet | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Jackalope | ||||||||
| Manticore | ||||||||
| Chimera | ||||||||
| Xeraph | ||||||||
| Dibblet | ||||||||
| Jackalope | ||||||||
| Manticore | ||||||||
| Dibblet | ||||||||
| Chimera | ||||||||
| Xeraph | ||||||||
| Jackalope | ||||||||
| Manticore | ||||||||
| Dibblet | ||||||||
| Chimera | ||||||||
| Xeraph | ||||||||
| Chimera | ||||||||
| Xeraph | ||||||||
| Dibblet | ||||||||
| Jackalope | ||||||||
| Manticore | ||||||||
3459_889b
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair1".
| Phoenix | ||||||||
| Vyrax | ||||||||
| Bellen | ||||||||
| Narloc | ||||||||
| Quokka | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Narloc | ||||||||
| Quokka | ||||||||
| Bellen | ||||||||
| Phoenix | ||||||||
| Vyrax | ||||||||
| Vyrax | ||||||||
| Bellen | ||||||||
| Phoenix | ||||||||
| Narloc | ||||||||
| Quokka | ||||||||
| Narloc | ||||||||
| Quokka | ||||||||
| Phoenix | ||||||||
| Bellen | ||||||||
| Vyrax | ||||||||
| Narloc | ||||||||
| Quokka | ||||||||
| Vyrax | ||||||||
| Bellen | ||||||||
| Phoenix | ||||||||
| Narloc | ||||||||
| Quokka | ||||||||
| Bellen | ||||||||
| Vyrax | ||||||||
| Phoenix | ||||||||
e74b_3573
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair1".
| Dibblet | ||||||||
| Gorret | ||||||||
| Vyrax | ||||||||
| Chimera | ||||||||
| Lystra | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Dibblet | ||||||||
| Gorret | ||||||||
| Vyrax | ||||||||
| Chimera | ||||||||
| Lystra | ||||||||
| Gorret | ||||||||
| Vyrax | ||||||||
| Dibblet | ||||||||
| Chimera | ||||||||
| Lystra | ||||||||
| Vyrax | ||||||||
| Dibblet | ||||||||
| Gorret | ||||||||
| Chimera | ||||||||
| Lystra | ||||||||
| Chimera | ||||||||
| Lystra | ||||||||
| Gorret | ||||||||
| Dibblet | ||||||||
| Vyrax | ||||||||
a14b_7ce2
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5comb".
| Xeraph | ||||||||
| Narloc | ||||||||
| Bellen | ||||||||
| Elwet | ||||||||
| Wyvern | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Bellen | ||||||||
| Elwet | ||||||||
| Narloc | ||||||||
| Xeraph | ||||||||
| Wyvern | ||||||||
| Wyvern | ||||||||
| Xeraph | ||||||||
| Bellen | ||||||||
| Narloc | ||||||||
| Elwet | ||||||||
| Wyvern | ||||||||
| Bellen | ||||||||
| Elwet | ||||||||
| Narloc | ||||||||
| Xeraph | ||||||||
| Elwet | ||||||||
| Narloc | ||||||||
| Bellen | ||||||||
| Xeraph | ||||||||
| Wyvern | ||||||||
9408_fe09
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair2".
| Yawclor | ||||||||
| Gorret | ||||||||
| Lystra | ||||||||
| Jackalope | ||||||||
| Xeraph | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Jackalope | ||||||||
| Xeraph | ||||||||
| Yawclor | ||||||||
| Gorret | ||||||||
| Lystra | ||||||||
| Jackalope | ||||||||
| Xeraph | ||||||||
| Yawclor | ||||||||
| Gorret | ||||||||
| Lystra | ||||||||
| Gorret | ||||||||
| Lystra | ||||||||
| Yawclor | ||||||||
| Jackalope | ||||||||
| Xeraph | ||||||||
| Gorret | ||||||||
| Lystra | ||||||||
| Yawclor | ||||||||
| Jackalope | ||||||||
| Xeraph | ||||||||
45d2_00f7
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5comb".
| Hydra | ||||||||
| Bellen | ||||||||
| Manticore | ||||||||
| Vyrax | ||||||||
| Narloc | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Hydra | ||||||||
| Manticore | ||||||||
| Bellen | ||||||||
| Vyrax | ||||||||
| Narloc | ||||||||
| Hydra | ||||||||
| Vyrax | ||||||||
| Bellen | ||||||||
| Manticore | ||||||||
| Narloc | ||||||||
| Bellen | ||||||||
| Manticore | ||||||||
| Vyrax | ||||||||
| Hydra | ||||||||
| Narloc | ||||||||
| Narloc | ||||||||
| Bellen | ||||||||
| Hydra | ||||||||
| Manticore | ||||||||
| Vyrax | ||||||||
| Narloc | ||||||||
| Vyrax | ||||||||
| Bellen | ||||||||
| Manticore | ||||||||
| Hydra | ||||||||
15a5_abd4
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5comb".
| Yawclor | ||||||||
| Phoenix | ||||||||
| Thorret | ||||||||
| Manticore | ||||||||
| Unicorn | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Yawclor | ||||||||
| Unicorn | ||||||||
| Manticore | ||||||||
| Thorret | ||||||||
| Phoenix | ||||||||
| Yawclor | ||||||||
| Phoenix | ||||||||
| Thorret | ||||||||
| Unicorn | ||||||||
| Manticore | ||||||||
| Phoenix | ||||||||
| Thorret | ||||||||
| Manticore | ||||||||
| Unicorn | ||||||||
| Yawclor | ||||||||
| Phoenix | ||||||||
| Thorret | ||||||||
| Unicorn | ||||||||
| Manticore | ||||||||
| Yawclor | ||||||||
| Manticore | ||||||||
| Thorret | ||||||||
| Unicorn | ||||||||
| Phoenix | ||||||||
| Yawclor | ||||||||
5cd1_8e7f
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5giraffe".
| Oclora | ||||||||
| Sphinx | ||||||||
| Inktoad | ||||||||
| Quokka | ||||||||
| Elwet | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Elwet | ||||||||
| Oclora | ||||||||
| Sphinx | ||||||||
| Quokka | ||||||||
| Inktoad | ||||||||
| Inktoad | ||||||||
| Quokka | ||||||||
| Oclora | ||||||||
| Sphinx | ||||||||
| Elwet | ||||||||
| Elwet | ||||||||
| Inktoad | ||||||||
| Quokka | ||||||||
| Oclora | ||||||||
| Sphinx | ||||||||
| Elwet | ||||||||
| Oclora | ||||||||
| Sphinx | ||||||||
| Inktoad | ||||||||
| Quokka | ||||||||
f9bd_3790
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair1".
| Ashen | ||||||||
| Sphinx | ||||||||
| Bellen | ||||||||
| Faylen | ||||||||
| Vyrax | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Faylen | ||||||||
| Vyrax | ||||||||
| Bellen | ||||||||
| Ashen | ||||||||
| Sphinx | ||||||||
| Ashen | ||||||||
| Bellen | ||||||||
| Sphinx | ||||||||
| Faylen | ||||||||
| Vyrax | ||||||||
| Faylen | ||||||||
| Vyrax | ||||||||
| Ashen | ||||||||
| Bellen | ||||||||
| Sphinx | ||||||||
| Ashen | ||||||||
| Bellen | ||||||||
| Sphinx | ||||||||
| Faylen | ||||||||
| Vyrax | ||||||||
c70f_92a3
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair1".
| Quokka | ||||||||
| Ashen | ||||||||
| Gorret | ||||||||
| Bellen | ||||||||
| Wyvern | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Bellen | ||||||||
| Wyvern | ||||||||
| Ashen | ||||||||
| Gorret | ||||||||
| Quokka | ||||||||
| Gorret | ||||||||
| Ashen | ||||||||
| Quokka | ||||||||
| Bellen | ||||||||
| Wyvern | ||||||||
| Ashen | ||||||||
| Gorret | ||||||||
| Quokka | ||||||||
| Bellen | ||||||||
| Wyvern | ||||||||
| Ashen | ||||||||
| Quokka | ||||||||
| Gorret | ||||||||
| Bellen | ||||||||
| Wyvern | ||||||||
| Bellen | ||||||||
| Wyvern | ||||||||
| Ashen | ||||||||
| Gorret | ||||||||
| Quokka | ||||||||
0a90_a240
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5giraffe".
| Gorret | ||||||||
| Vyrax | ||||||||
| Oclora | ||||||||
| Thorret | ||||||||
| Sphinx | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Oclora | ||||||||
| Thorret | ||||||||
| Gorret | ||||||||
| Vyrax | ||||||||
| Sphinx | ||||||||
| Oclora | ||||||||
| Thorret | ||||||||
| Gorret | ||||||||
| Vyrax | ||||||||
| Sphinx | ||||||||
| Sphinx | ||||||||
| Vyrax | ||||||||
| Gorret | ||||||||
| Oclora | ||||||||
| Thorret | ||||||||
| Oclora | ||||||||
| Thorret | ||||||||
| Gorret | ||||||||
| Vyrax | ||||||||
| Sphinx | ||||||||
| Sphinx | ||||||||
| Gorret | ||||||||
| Vyrax | ||||||||
| Oclora | ||||||||
| Thorret | ||||||||
f41b_c109
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5comb".
| Unicorn | ||||||||
| Ashen | ||||||||
| Vyrax | ||||||||
| Dibblet | ||||||||
| Inktoad | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Inktoad | ||||||||
| Ashen | ||||||||
| Unicorn | ||||||||
| Vyrax | ||||||||
| Dibblet | ||||||||
| Dibblet | ||||||||
| Ashen | ||||||||
| Unicorn | ||||||||
| Vyrax | ||||||||
| Inktoad | ||||||||
| Dibblet | ||||||||
| Ashen | ||||||||
| Vyrax | ||||||||
| Unicorn | ||||||||
| Inktoad | ||||||||
0484_61a9
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair2".
| Bellen | ||||||||
| Oclora | ||||||||
| Elwet | ||||||||
| Faylen | ||||||||
| Jackalope | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Elwet | ||||||||
| Faylen | ||||||||
| Jackalope | ||||||||
| Bellen | ||||||||
| Oclora | ||||||||
| Bellen | ||||||||
| Oclora | ||||||||
| Faylen | ||||||||
| Jackalope | ||||||||
| Elwet | ||||||||
| Elwet | ||||||||
| Faylen | ||||||||
| Jackalope | ||||||||
| Bellen | ||||||||
| Oclora | ||||||||
| Elwet | ||||||||
| Faylen | ||||||||
| Jackalope | ||||||||
| Bellen | ||||||||
| Oclora | ||||||||
| Bellen | ||||||||
| Oclora | ||||||||
| Faylen | ||||||||
| Elwet | ||||||||
| Jackalope | ||||||||
df22_7a5a
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5comb".
| Oclora | ||||||||
| Unicorn | ||||||||
| Rynoth | ||||||||
| Yawclor | ||||||||
| Vyrax | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Yawclor | ||||||||
| Rynoth | ||||||||
| Unicorn | ||||||||
| Oclora | ||||||||
| Vyrax | ||||||||
| Vyrax | ||||||||
| Oclora | ||||||||
| Rynoth | ||||||||
| Unicorn | ||||||||
| Yawclor | ||||||||
| Vyrax | ||||||||
| Yawclor | ||||||||
| Oclora | ||||||||
| Rynoth | ||||||||
| Unicorn | ||||||||
| Yawclor | ||||||||
| Oclora | ||||||||
| Unicorn | ||||||||
| Rynoth | ||||||||
| Vyrax | ||||||||
| Vyrax | ||||||||
| Rynoth | ||||||||
| Yawclor | ||||||||
| Oclora | ||||||||
| Unicorn | ||||||||
bcb7_1162
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair1".
| Dibblet | ||||||||
| Phoenix | ||||||||
| Vyrax | ||||||||
| Inktoad | ||||||||
| Manticore | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Phoenix | ||||||||
| Vyrax | ||||||||
| Dibblet | ||||||||
| Inktoad | ||||||||
| Manticore | ||||||||
| Dibblet | ||||||||
| Phoenix | ||||||||
| Vyrax | ||||||||
| Inktoad | ||||||||
| Manticore | ||||||||
| Vyrax | ||||||||
| Dibblet | ||||||||
| Phoenix | ||||||||
| Inktoad | ||||||||
| Manticore | ||||||||
| Inktoad | ||||||||
| Manticore | ||||||||
| Phoenix | ||||||||
| Dibblet | ||||||||
| Vyrax | ||||||||
| Phoenix | ||||||||
| Dibblet | ||||||||
| Vyrax | ||||||||
| Inktoad | ||||||||
| Manticore | ||||||||
cd46_7f29
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5comb".
| Faylen | ||||||||
| Manticore | ||||||||
| Rynoth | ||||||||
| Kraken | ||||||||
| Sphinx | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Manticore | ||||||||
| Rynoth | ||||||||
| Faylen | ||||||||
| Kraken | ||||||||
| Sphinx | ||||||||
| Kraken | ||||||||
| Rynoth | ||||||||
| Faylen | ||||||||
| Manticore | ||||||||
| Sphinx | ||||||||
| Rynoth | ||||||||
| Faylen | ||||||||
| Manticore | ||||||||
| Kraken | ||||||||
| Sphinx | ||||||||
| Manticore | ||||||||
| Rynoth | ||||||||
| Faylen | ||||||||
| Kraken | ||||||||
| Sphinx | ||||||||
| Faylen | ||||||||
| Rynoth | ||||||||
| Manticore | ||||||||
| Kraken | ||||||||
| Sphinx | ||||||||
9afc_fd3a
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair2".
| Gorret | ||||||||
| Yawclor | ||||||||
| Kraken | ||||||||
| Unicorn | ||||||||
| Wyvern | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Unicorn | ||||||||
| Wyvern | ||||||||
| Kraken | ||||||||
| Gorret | ||||||||
| Yawclor | ||||||||
| Kraken | ||||||||
| Unicorn | ||||||||
| Wyvern | ||||||||
| Gorret | ||||||||
| Yawclor | ||||||||
| Wyvern | ||||||||
| Kraken | ||||||||
| Unicorn | ||||||||
| Gorret | ||||||||
| Yawclor | ||||||||
| Gorret | ||||||||
| Yawclor | ||||||||
| Kraken | ||||||||
| Unicorn | ||||||||
| Wyvern | ||||||||
43aa_3bf0
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair2".
| Dibblet | ||||||||
| Hydra | ||||||||
| Manticore | ||||||||
| Ashen | ||||||||
| Rynoth | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Ashen | ||||||||
| Rynoth | ||||||||
| Manticore | ||||||||
| Dibblet | ||||||||
| Hydra | ||||||||
| Dibblet | ||||||||
| Hydra | ||||||||
| Ashen | ||||||||
| Rynoth | ||||||||
| Manticore | ||||||||
| Manticore | ||||||||
| Rynoth | ||||||||
| Ashen | ||||||||
| Dibblet | ||||||||
| Hydra | ||||||||
| Manticore | ||||||||
| Ashen | ||||||||
| Rynoth | ||||||||
| Dibblet | ||||||||
| Hydra | ||||||||
| Ashen | ||||||||
| Manticore | ||||||||
| Rynoth | ||||||||
| Dibblet | ||||||||
| Hydra | ||||||||
f814_e4a4
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5giraffe".
| Lystra | ||||||||
| Rynoth | ||||||||
| Gorret | ||||||||
| Hydra | ||||||||
| Narloc | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Narloc | ||||||||
| Gorret | ||||||||
| Lystra | ||||||||
| Rynoth | ||||||||
| Hydra | ||||||||
| Narloc | ||||||||
| Gorret | ||||||||
| Hydra | ||||||||
| Lystra | ||||||||
| Rynoth | ||||||||
| Lystra | ||||||||
| Rynoth | ||||||||
| Gorret | ||||||||
| Hydra | ||||||||
| Narloc | ||||||||
| Gorret | ||||||||
| Hydra | ||||||||
| Lystra | ||||||||
| Rynoth | ||||||||
| Narloc | ||||||||
| Narloc | ||||||||
| Lystra | ||||||||
| Rynoth | ||||||||
| Gorret | ||||||||
| Hydra | ||||||||
5add_d2c2
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5giraffe".
| Faylen | ||||||||
| Oclora | ||||||||
| Unicorn | ||||||||
| Bellen | ||||||||
| Xeraph | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Faylen | ||||||||
| Xeraph | ||||||||
| Bellen | ||||||||
| Oclora | ||||||||
| Unicorn | ||||||||
| Bellen | ||||||||
| Xeraph | ||||||||
| Oclora | ||||||||
| Unicorn | ||||||||
| Faylen | ||||||||
| Faylen | ||||||||
| Bellen | ||||||||
| Xeraph | ||||||||
| Oclora | ||||||||
| Unicorn | ||||||||
| Bellen | ||||||||
| Xeraph | ||||||||
| Oclora | ||||||||
| Unicorn | ||||||||
| Faylen | ||||||||
1967_bf0c
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair2".
| Yawclor | ||||||||
| Zypher | ||||||||
| Faylen | ||||||||
| Ashen | ||||||||
| Oclora | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Ashen | ||||||||
| Oclora | ||||||||
| Yawclor | ||||||||
| Zypher | ||||||||
| Faylen | ||||||||
| Ashen | ||||||||
| Oclora | ||||||||
| Faylen | ||||||||
| Yawclor | ||||||||
| Zypher | ||||||||
| Yawclor | ||||||||
| Zypher | ||||||||
| Faylen | ||||||||
| Ashen | ||||||||
| Oclora | ||||||||
| Ashen | ||||||||
| Oclora | ||||||||
| Faylen | ||||||||
| Yawclor | ||||||||
| Zypher | ||||||||
1ef7_9620
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair2".
| Oclora | ||||||||
| Xeraph | ||||||||
| Elwet | ||||||||
| Bellen | ||||||||
| Rynoth | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Bellen | ||||||||
| Rynoth | ||||||||
| Elwet | ||||||||
| Oclora | ||||||||
| Xeraph | ||||||||
| Elwet | ||||||||
| Bellen | ||||||||
| Rynoth | ||||||||
| Oclora | ||||||||
| Xeraph | ||||||||
| Oclora | ||||||||
| Xeraph | ||||||||
| Bellen | ||||||||
| Rynoth | ||||||||
| Elwet | ||||||||
| Oclora | ||||||||
| Xeraph | ||||||||
| Bellen | ||||||||
| Rynoth | ||||||||
| Elwet | ||||||||
da7b_c21e
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5giraffe".
| Bellen | ||||||||
| Lystra | ||||||||
| Manticore | ||||||||
| Rynoth | ||||||||
| Gorret | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Gorret | ||||||||
| Bellen | ||||||||
| Lystra | ||||||||
| Manticore | ||||||||
| Rynoth | ||||||||
| Gorret | ||||||||
| Manticore | ||||||||
| Rynoth | ||||||||
| Bellen | ||||||||
| Lystra | ||||||||
| Bellen | ||||||||
| Lystra | ||||||||
| Manticore | ||||||||
| Rynoth | ||||||||
| Gorret | ||||||||
| Gorret | ||||||||
| Bellen | ||||||||
| Lystra | ||||||||
| Manticore | ||||||||
| Rynoth | ||||||||
| Manticore | ||||||||
| Rynoth | ||||||||
| Bellen | ||||||||
| Lystra | ||||||||
| Gorret | ||||||||
9eff_8254
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5comb".
| Oclora | ||||||||
| Jackalope | ||||||||
| Gorret | ||||||||
| Narloc | ||||||||
| Wyvern | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Jackalope | ||||||||
| Narloc | ||||||||
| Gorret | ||||||||
| Wyvern | ||||||||
| Oclora | ||||||||
| Oclora | ||||||||
| Wyvern | ||||||||
| Gorret | ||||||||
| Narloc | ||||||||
| Jackalope | ||||||||
| Jackalope | ||||||||
| Narloc | ||||||||
| Wyvern | ||||||||
| Gorret | ||||||||
| Oclora | ||||||||
| Oclora | ||||||||
| Gorret | ||||||||
| Wyvern | ||||||||
| Narloc | ||||||||
| Jackalope | ||||||||
| Jackalope | ||||||||
| Gorret | ||||||||
| Narloc | ||||||||
| Wyvern | ||||||||
| Oclora | ||||||||
4d92_eef2
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair3".
| Elwet | ||||||||
| Thorret | ||||||||
| Ashen | ||||||||
| Chimera | ||||||||
| Hydra | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Elwet | ||||||||
| Thorret | ||||||||
| Chimera | ||||||||
| Hydra | ||||||||
| Ashen | ||||||||
| Ashen | ||||||||
| Hydra | ||||||||
| Chimera | ||||||||
| Elwet | ||||||||
| Thorret | ||||||||
| Elwet | ||||||||
| Thorret | ||||||||
| Ashen | ||||||||
| Chimera | ||||||||
| Hydra | ||||||||
06bd_aea8
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5giraffe".
| Bellen | ||||||||
| Gorret | ||||||||
| Hydra | ||||||||
| Elwet | ||||||||
| Zypher | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Bellen | ||||||||
| Elwet | ||||||||
| Zypher | ||||||||
| Gorret | ||||||||
| Hydra | ||||||||
| Elwet | ||||||||
| Zypher | ||||||||
| Gorret | ||||||||
| Hydra | ||||||||
| Bellen | ||||||||
| Gorret | ||||||||
| Hydra | ||||||||
| Elwet | ||||||||
| Zypher | ||||||||
| Bellen | ||||||||
9ffb_6a57
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5giraffe".
| Xeraph | ||||||||
| Yawclor | ||||||||
| Sphinx | ||||||||
| Thorret | ||||||||
| Faylen | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Yawclor | ||||||||
| Sphinx | ||||||||
| Thorret | ||||||||
| Xeraph | ||||||||
| Faylen | ||||||||
| Faylen | ||||||||
| Xeraph | ||||||||
| Yawclor | ||||||||
| Sphinx | ||||||||
| Thorret | ||||||||
| Faylen | ||||||||
| Xeraph | ||||||||
| Yawclor | ||||||||
| Sphinx | ||||||||
| Thorret | ||||||||
| Faylen | ||||||||
| Yawclor | ||||||||
| Sphinx | ||||||||
| Thorret | ||||||||
| Xeraph | ||||||||
| Xeraph | ||||||||
| Yawclor | ||||||||
| Sphinx | ||||||||
| Thorret | ||||||||
| Faylen | ||||||||
93ff_1977
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5comb".
| Manticore | ||||||||
| Dibblet | ||||||||
| Inktoad | ||||||||
| Gorret | ||||||||
| Wyvern | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Manticore | ||||||||
| Inktoad | ||||||||
| Wyvern | ||||||||
| Gorret | ||||||||
| Dibblet | ||||||||
| Gorret | ||||||||
| Wyvern | ||||||||
| Inktoad | ||||||||
| Dibblet | ||||||||
| Manticore | ||||||||
| Manticore | ||||||||
| Wyvern | ||||||||
| Gorret | ||||||||
| Inktoad | ||||||||
| Dibblet | ||||||||
| Inktoad | ||||||||
| Wyvern | ||||||||
| Gorret | ||||||||
| Dibblet | ||||||||
| Manticore | ||||||||
55a6_98c7
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5giraffe".
| Phoenix | ||||||||
| Gorret | ||||||||
| Inktoad | ||||||||
| Faylen | ||||||||
| Rynoth | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Phoenix | ||||||||
| Faylen | ||||||||
| Rynoth | ||||||||
| Gorret | ||||||||
| Inktoad | ||||||||
| Phoenix | ||||||||
| Gorret | ||||||||
| Inktoad | ||||||||
| Faylen | ||||||||
| Rynoth | ||||||||
| Faylen | ||||||||
| Rynoth | ||||||||
| Gorret | ||||||||
| Inktoad | ||||||||
| Phoenix | ||||||||
ca5a_a388
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5giraffe".
| Inktoad | ||||||||
| Dibblet | ||||||||
| Sphinx | ||||||||
| Hydra | ||||||||
| Narloc | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Sphinx | ||||||||
| Hydra | ||||||||
| Narloc | ||||||||
| Dibblet | ||||||||
| Inktoad | ||||||||
| Inktoad | ||||||||
| Hydra | ||||||||
| Narloc | ||||||||
| Dibblet | ||||||||
| Sphinx | ||||||||
| Inktoad | ||||||||
| Dibblet | ||||||||
| Sphinx | ||||||||
| Hydra | ||||||||
| Narloc | ||||||||
| Dibblet | ||||||||
| Hydra | ||||||||
| Narloc | ||||||||
| Sphinx | ||||||||
| Inktoad | ||||||||
| Dibblet | ||||||||
| Sphinx | ||||||||
| Hydra | ||||||||
| Narloc | ||||||||
| Inktoad | ||||||||
66ce_c89a
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair2".
| Manticore | ||||||||
| Ashen | ||||||||
| Inktoad | ||||||||
| Unicorn | ||||||||
| Xeraph | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Ashen | ||||||||
| Inktoad | ||||||||
| Manticore | ||||||||
| Unicorn | ||||||||
| Xeraph | ||||||||
| Unicorn | ||||||||
| Xeraph | ||||||||
| Inktoad | ||||||||
| Ashen | ||||||||
| Manticore | ||||||||
| Unicorn | ||||||||
| Xeraph | ||||||||
| Manticore | ||||||||
| Ashen | ||||||||
| Inktoad | ||||||||
| Ashen | ||||||||
| Inktoad | ||||||||
| Manticore | ||||||||
| Unicorn | ||||||||
| Xeraph | ||||||||
0e42_c513
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair3".
| Phoenix | ||||||||
| Unicorn | ||||||||
| Narloc | ||||||||
| Ashen | ||||||||
| Rynoth | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Phoenix | ||||||||
| Unicorn | ||||||||
| Ashen | ||||||||
| Narloc | ||||||||
| Rynoth | ||||||||
| Narloc | ||||||||
| Ashen | ||||||||
| Rynoth | ||||||||
| Phoenix | ||||||||
| Unicorn | ||||||||
| Rynoth | ||||||||
| Ashen | ||||||||
| Narloc | ||||||||
| Phoenix | ||||||||
| Unicorn | ||||||||
| Phoenix | ||||||||
| Unicorn | ||||||||
| Narloc | ||||||||
| Ashen | ||||||||
| Rynoth | ||||||||
3b82_8677
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5giraffe".
| Inktoad | ||||||||
| Rynoth | ||||||||
| Manticore | ||||||||
| Unicorn | ||||||||
| Sphinx | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Sphinx | ||||||||
| Manticore | ||||||||
| Inktoad | ||||||||
| Rynoth | ||||||||
| Unicorn | ||||||||
| Sphinx | ||||||||
| Inktoad | ||||||||
| Rynoth | ||||||||
| Manticore | ||||||||
| Unicorn | ||||||||
| Manticore | ||||||||
| Unicorn | ||||||||
| Inktoad | ||||||||
| Rynoth | ||||||||
| Sphinx | ||||||||
| Sphinx | ||||||||
| Manticore | ||||||||
| Unicorn | ||||||||
| Inktoad | ||||||||
| Rynoth | ||||||||
| Sphinx | ||||||||
| Unicorn | ||||||||
| Manticore | ||||||||
| Inktoad | ||||||||
| Rynoth | ||||||||
6938_e294
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5comb".
| Chimera | ||||||||
| Kraken | ||||||||
| Xeraph | ||||||||
| Elwet | ||||||||
| Zypher | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Chimera | ||||||||
| Kraken | ||||||||
| Zypher | ||||||||
| Elwet | ||||||||
| Xeraph | ||||||||
| Xeraph | ||||||||
| Elwet | ||||||||
| Zypher | ||||||||
| Kraken | ||||||||
| Chimera | ||||||||
| Kraken | ||||||||
| Xeraph | ||||||||
| Zypher | ||||||||
| Elwet | ||||||||
| Chimera | ||||||||
| Chimera | ||||||||
| Zypher | ||||||||
| Elwet | ||||||||
| Xeraph | ||||||||
| Kraken | ||||||||
| Chimera | ||||||||
| Kraken | ||||||||
| Xeraph | ||||||||
| Elwet | ||||||||
| Zypher | ||||||||
53ce_f0ad
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5comb".
| Xeraph | ||||||||
| Narloc | ||||||||
| Hydra | ||||||||
| Wyvern | ||||||||
| Jackalope | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Narloc | ||||||||
| Wyvern | ||||||||
| Hydra | ||||||||
| Xeraph | ||||||||
| Jackalope | ||||||||
| Jackalope | ||||||||
| Xeraph | ||||||||
| Hydra | ||||||||
| Narloc | ||||||||
| Wyvern | ||||||||
| Hydra | ||||||||
| Wyvern | ||||||||
| Narloc | ||||||||
| Xeraph | ||||||||
| Jackalope | ||||||||
| Jackalope | ||||||||
| Hydra | ||||||||
| Narloc | ||||||||
| Wyvern | ||||||||
| Xeraph | ||||||||
| Hydra | ||||||||
| Wyvern | ||||||||
| Narloc | ||||||||
| Xeraph | ||||||||
| Jackalope | ||||||||
0a1f_ff64
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5giraffe".
| Phoenix | ||||||||
| Chimera | ||||||||
| Faylen | ||||||||
| Lystra | ||||||||
| Vyrax | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Phoenix | ||||||||
| Chimera | ||||||||
| Faylen | ||||||||
| Lystra | ||||||||
| Vyrax | ||||||||
| Phoenix | ||||||||
| Faylen | ||||||||
| Lystra | ||||||||
| Vyrax | ||||||||
| Chimera | ||||||||
| Lystra | ||||||||
| Vyrax | ||||||||
| Chimera | ||||||||
| Faylen | ||||||||
| Phoenix | ||||||||
| Phoenix | ||||||||
| Lystra | ||||||||
| Vyrax | ||||||||
| Chimera | ||||||||
| Faylen | ||||||||
af4e_053a
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5giraffe".
| Dibblet | ||||||||
| Oclora | ||||||||
| Jackalope | ||||||||
| Unicorn | ||||||||
| Manticore | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Jackalope | ||||||||
| Unicorn | ||||||||
| Dibblet | ||||||||
| Oclora | ||||||||
| Manticore | ||||||||
| Manticore | ||||||||
| Jackalope | ||||||||
| Unicorn | ||||||||
| Dibblet | ||||||||
| Oclora | ||||||||
| Dibblet | ||||||||
| Oclora | ||||||||
| Jackalope | ||||||||
| Unicorn | ||||||||
| Manticore | ||||||||
01cc_c12d
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5giraffe".
| Bellen | ||||||||
| Dibblet | ||||||||
| Gorret | ||||||||
| Jackalope | ||||||||
| Quokka | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Dibblet | ||||||||
| Gorret | ||||||||
| Jackalope | ||||||||
| Quokka | ||||||||
| Bellen | ||||||||
| Jackalope | ||||||||
| Quokka | ||||||||
| Dibblet | ||||||||
| Gorret | ||||||||
| Bellen | ||||||||
| Jackalope | ||||||||
| Quokka | ||||||||
| Dibblet | ||||||||
| Gorret | ||||||||
| Bellen | ||||||||
| Jackalope | ||||||||
| Dibblet | ||||||||
| Gorret | ||||||||
| Quokka | ||||||||
| Bellen | ||||||||
13f3_350b
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair1".
| Manticore | ||||||||
| Rynoth | ||||||||
| Chimera | ||||||||
| Vyrax | ||||||||
| Bellen | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Vyrax | ||||||||
| Bellen | ||||||||
| Chimera | ||||||||
| Manticore | ||||||||
| Rynoth | ||||||||
| Manticore | ||||||||
| Rynoth | ||||||||
| Vyrax | ||||||||
| Bellen | ||||||||
| Chimera | ||||||||
| Manticore | ||||||||
| Rynoth | ||||||||
| Bellen | ||||||||
| Chimera | ||||||||
| Vyrax | ||||||||
| Bellen | ||||||||
| Chimera | ||||||||
| Vyrax | ||||||||
| Manticore | ||||||||
| Rynoth | ||||||||
| Bellen | ||||||||
| Vyrax | ||||||||
| Chimera | ||||||||
| Manticore | ||||||||
| Rynoth | ||||||||
e856_b72d
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair1".
| Inktoad | ||||||||
| Bellen | ||||||||
| Phoenix | ||||||||
| Unicorn | ||||||||
| Wyvern | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Phoenix | ||||||||
| Bellen | ||||||||
| Inktoad | ||||||||
| Unicorn | ||||||||
| Wyvern | ||||||||
| Unicorn | ||||||||
| Wyvern | ||||||||
| Inktoad | ||||||||
| Bellen | ||||||||
| Phoenix | ||||||||
| Inktoad | ||||||||
| Phoenix | ||||||||
| Bellen | ||||||||
| Unicorn | ||||||||
| Wyvern | ||||||||
| Bellen | ||||||||
| Inktoad | ||||||||
| Phoenix | ||||||||
| Unicorn | ||||||||
| Wyvern | ||||||||
| Unicorn | ||||||||
| Wyvern | ||||||||
| Inktoad | ||||||||
| Phoenix | ||||||||
| Bellen | ||||||||
4f1a_862f
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair3".
| Gorret | ||||||||
| Wyvern | ||||||||
| Bellen | ||||||||
| Inktoad | ||||||||
| Ashen | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Inktoad | ||||||||
| Ashen | ||||||||
| Bellen | ||||||||
| Gorret | ||||||||
| Wyvern | ||||||||
| Bellen | ||||||||
| Inktoad | ||||||||
| Ashen | ||||||||
| Gorret | ||||||||
| Wyvern | ||||||||
| Ashen | ||||||||
| Inktoad | ||||||||
| Bellen | ||||||||
| Gorret | ||||||||
| Wyvern | ||||||||
| Ashen | ||||||||
| Bellen | ||||||||
| Inktoad | ||||||||
| Gorret | ||||||||
| Wyvern | ||||||||
| Gorret | ||||||||
| Wyvern | ||||||||
| Inktoad | ||||||||
| Ashen | ||||||||
| Bellen | ||||||||
bd91_f47d
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair2".
| Quokka | ||||||||
| Vyrax | ||||||||
| Sphinx | ||||||||
| Chimera | ||||||||
| Zypher | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Sphinx | ||||||||
| Chimera | ||||||||
| Zypher | ||||||||
| Quokka | ||||||||
| Vyrax | ||||||||
| Quokka | ||||||||
| Vyrax | ||||||||
| Chimera | ||||||||
| Sphinx | ||||||||
| Zypher | ||||||||
| Chimera | ||||||||
| Zypher | ||||||||
| Sphinx | ||||||||
| Quokka | ||||||||
| Vyrax | ||||||||
| Quokka | ||||||||
| Vyrax | ||||||||
| Sphinx | ||||||||
| Chimera | ||||||||
| Zypher | ||||||||
cb28_fc75
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair1".
| Faylen | ||||||||
| Thorret | ||||||||
| Unicorn | ||||||||
| Quokka | ||||||||
| Rynoth | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Quokka | ||||||||
| Rynoth | ||||||||
| Faylen | ||||||||
| Thorret | ||||||||
| Unicorn | ||||||||
| Quokka | ||||||||
| Rynoth | ||||||||
| Faylen | ||||||||
| Thorret | ||||||||
| Unicorn | ||||||||
| Thorret | ||||||||
| Unicorn | ||||||||
| Faylen | ||||||||
| Quokka | ||||||||
| Rynoth | ||||||||
| Faylen | ||||||||
| Unicorn | ||||||||
| Thorret | ||||||||
| Quokka | ||||||||
| Rynoth | ||||||||
0e57_a5ca
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair1".
| Ashen | ||||||||
| Zypher | ||||||||
| Thorret | ||||||||
| Rynoth | ||||||||
| Xeraph | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Rynoth | ||||||||
| Xeraph | ||||||||
| Thorret | ||||||||
| Ashen | ||||||||
| Zypher | ||||||||
| Thorret | ||||||||
| Xeraph | ||||||||
| Rynoth | ||||||||
| Ashen | ||||||||
| Zypher | ||||||||
| Ashen | ||||||||
| Zypher | ||||||||
| Xeraph | ||||||||
| Rynoth | ||||||||
| Thorret | ||||||||
| Ashen | ||||||||
| Zypher | ||||||||
| Rynoth | ||||||||
| Thorret | ||||||||
| Xeraph | ||||||||
| Ashen | ||||||||
| Zypher | ||||||||
| Rynoth | ||||||||
| Thorret | ||||||||
| Xeraph | ||||||||
3df9_f946
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair2".
| Jackalope | ||||||||
| Elwet | ||||||||
| Quokka | ||||||||
| Lystra | ||||||||
| Xeraph | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Lystra | ||||||||
| Xeraph | ||||||||
| Elwet | ||||||||
| Quokka | ||||||||
| Jackalope | ||||||||
| Lystra | ||||||||
| Xeraph | ||||||||
| Elwet | ||||||||
| Jackalope | ||||||||
| Quokka | ||||||||
| Lystra | ||||||||
| Xeraph | ||||||||
| Jackalope | ||||||||
| Elwet | ||||||||
| Quokka | ||||||||
| Elwet | ||||||||
| Quokka | ||||||||
| Jackalope | ||||||||
| Lystra | ||||||||
| Xeraph | ||||||||
| Jackalope | ||||||||
| Elwet | ||||||||
| Quokka | ||||||||
| Lystra | ||||||||
| Xeraph | ||||||||
0b3d_2b32
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair1".
| Phoenix | ||||||||
| Vyrax | ||||||||
| Jackalope | ||||||||
| Faylen | ||||||||
| Hydra | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Phoenix | ||||||||
| Vyrax | ||||||||
| Hydra | ||||||||
| Faylen | ||||||||
| Jackalope | ||||||||
| Faylen | ||||||||
| Hydra | ||||||||
| Jackalope | ||||||||
| Phoenix | ||||||||
| Vyrax | ||||||||
| Hydra | ||||||||
| Jackalope | ||||||||
| Faylen | ||||||||
| Phoenix | ||||||||
| Vyrax | ||||||||
| Faylen | ||||||||
| Hydra | ||||||||
| Jackalope | ||||||||
| Phoenix | ||||||||
| Vyrax | ||||||||
093a_ae38
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair3".
| Chimera | ||||||||
| Kraken | ||||||||
| Jackalope | ||||||||
| Unicorn | ||||||||
| Wyvern | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Unicorn | ||||||||
| Wyvern | ||||||||
| Jackalope | ||||||||
| Chimera | ||||||||
| Kraken | ||||||||
| Chimera | ||||||||
| Kraken | ||||||||
| Unicorn | ||||||||
| Jackalope | ||||||||
| Wyvern | ||||||||
| Chimera | ||||||||
| Kraken | ||||||||
| Unicorn | ||||||||
| Wyvern | ||||||||
| Jackalope | ||||||||
| Chimera | ||||||||
| Kraken | ||||||||
| Jackalope | ||||||||
| Wyvern | ||||||||
| Unicorn | ||||||||
| Unicorn | ||||||||
| Wyvern | ||||||||
| Jackalope | ||||||||
| Chimera | ||||||||
| Kraken | ||||||||
8ab3_8a99
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair2".
| Hydra | ||||||||
| Narloc | ||||||||
| Elwet | ||||||||
| Ashen | ||||||||
| Chimera | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Elwet | ||||||||
| Ashen | ||||||||
| Chimera | ||||||||
| Hydra | ||||||||
| Narloc | ||||||||
| Elwet | ||||||||
| Ashen | ||||||||
| Chimera | ||||||||
| Hydra | ||||||||
| Narloc | ||||||||
| Ashen | ||||||||
| Chimera | ||||||||
| Elwet | ||||||||
| Hydra | ||||||||
| Narloc | ||||||||
| Hydra | ||||||||
| Narloc | ||||||||
| Ashen | ||||||||
| Chimera | ||||||||
| Elwet | ||||||||
3245_a011
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair2".
| Ashen | ||||||||
| Bellen | ||||||||
| Lystra | ||||||||
| Elwet | ||||||||
| Inktoad | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Ashen | ||||||||
| Bellen | ||||||||
| Lystra | ||||||||
| Elwet | ||||||||
| Inktoad | ||||||||
| Lystra | ||||||||
| Ashen | ||||||||
| Bellen | ||||||||
| Elwet | ||||||||
| Inktoad | ||||||||
| Elwet | ||||||||
| Inktoad | ||||||||
| Lystra | ||||||||
| Ashen | ||||||||
| Bellen | ||||||||
| Elwet | ||||||||
| Inktoad | ||||||||
| Ashen | ||||||||
| Bellen | ||||||||
| Lystra | ||||||||
| Elwet | ||||||||
| Inktoad | ||||||||
| Bellen | ||||||||
| Ashen | ||||||||
| Lystra | ||||||||
4d41_111e
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair1".
| Inktoad | ||||||||
| Sphinx | ||||||||
| Chimera | ||||||||
| Vyrax | ||||||||
| Lystra | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Lystra | ||||||||
| Chimera | ||||||||
| Vyrax | ||||||||
| Inktoad | ||||||||
| Sphinx | ||||||||
| Inktoad | ||||||||
| Sphinx | ||||||||
| Chimera | ||||||||
| Lystra | ||||||||
| Vyrax | ||||||||
| Chimera | ||||||||
| Lystra | ||||||||
| Vyrax | ||||||||
| Inktoad | ||||||||
| Sphinx | ||||||||
| Inktoad | ||||||||
| Sphinx | ||||||||
| Chimera | ||||||||
| Lystra | ||||||||
| Vyrax | ||||||||
| Lystra | ||||||||
| Vyrax | ||||||||
| Chimera | ||||||||
| Inktoad | ||||||||
| Sphinx | ||||||||
0fbf_81d0
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5giraffe".
| Narloc | ||||||||
| Chimera | ||||||||
| Thorret | ||||||||
| Phoenix | ||||||||
| Wyvern | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Chimera | ||||||||
| Thorret | ||||||||
| Phoenix | ||||||||
| Wyvern | ||||||||
| Narloc | ||||||||
| Narloc | ||||||||
| Phoenix | ||||||||
| Wyvern | ||||||||
| Chimera | ||||||||
| Thorret | ||||||||
| Narloc | ||||||||
| Phoenix | ||||||||
| Wyvern | ||||||||
| Chimera | ||||||||
| Thorret | ||||||||
| Phoenix | ||||||||
| Wyvern | ||||||||
| Thorret | ||||||||
| Chimera | ||||||||
| Narloc | ||||||||
c743_d224
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5comb".
| Thorret | ||||||||
| Rynoth | ||||||||
| Inktoad | ||||||||
| Zypher | ||||||||
| Bellen | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Inktoad | ||||||||
| Zypher | ||||||||
| Rynoth | ||||||||
| Thorret | ||||||||
| Bellen | ||||||||
| Bellen | ||||||||
| Thorret | ||||||||
| Rynoth | ||||||||
| Zypher | ||||||||
| Inktoad | ||||||||
| Inktoad | ||||||||
| Zypher | ||||||||
| Rynoth | ||||||||
| Thorret | ||||||||
| Bellen | ||||||||
| Thorret | ||||||||
| Rynoth | ||||||||
| Zypher | ||||||||
| Inktoad | ||||||||
| Bellen | ||||||||
| Bellen | ||||||||
| Thorret | ||||||||
| Zypher | ||||||||
| Inktoad | ||||||||
| Rynoth | ||||||||
e226_e653
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5giraffe".
| Jackalope | ||||||||
| Elwet | ||||||||
| Unicorn | ||||||||
| Gorret | ||||||||
| Lystra | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Jackalope | ||||||||
| Gorret | ||||||||
| Lystra | ||||||||
| Elwet | ||||||||
| Unicorn | ||||||||
| Elwet | ||||||||
| Unicorn | ||||||||
| Gorret | ||||||||
| Lystra | ||||||||
| Jackalope | ||||||||
| Jackalope | ||||||||
| Elwet | ||||||||
| Unicorn | ||||||||
| Gorret | ||||||||
| Lystra | ||||||||
| Jackalope | ||||||||
| Gorret | ||||||||
| Lystra | ||||||||
| Elwet | ||||||||
| Unicorn | ||||||||
| Elwet | ||||||||
| Gorret | ||||||||
| Lystra | ||||||||
| Unicorn | ||||||||
| Jackalope | ||||||||
7753_f81d
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair3".
| Manticore | ||||||||
| Rynoth | ||||||||
| Sphinx | ||||||||
| Thorret | ||||||||
| Wyvern | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Manticore | ||||||||
| Rynoth | ||||||||
| Wyvern | ||||||||
| Sphinx | ||||||||
| Thorret | ||||||||
| Manticore | ||||||||
| Rynoth | ||||||||
| Sphinx | ||||||||
| Thorret | ||||||||
| Wyvern | ||||||||
| Sphinx | ||||||||
| Thorret | ||||||||
| Wyvern | ||||||||
| Manticore | ||||||||
| Rynoth | ||||||||
| Thorret | ||||||||
| Wyvern | ||||||||
| Sphinx | ||||||||
| Manticore | ||||||||
| Rynoth | ||||||||
8842_35f3
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair2".
| Gorret | ||||||||
| Zypher | ||||||||
| Ashen | ||||||||
| Kraken | ||||||||
| Thorret | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Thorret | ||||||||
| Ashen | ||||||||
| Kraken | ||||||||
| Gorret | ||||||||
| Zypher | ||||||||
| Gorret | ||||||||
| Zypher | ||||||||
| Ashen | ||||||||
| Kraken | ||||||||
| Thorret | ||||||||
| Thorret | ||||||||
| Ashen | ||||||||
| Kraken | ||||||||
| Gorret | ||||||||
| Zypher | ||||||||
| Gorret | ||||||||
| Zypher | ||||||||
| Thorret | ||||||||
| Ashen | ||||||||
| Kraken | ||||||||
| Ashen | ||||||||
| Kraken | ||||||||
| Thorret | ||||||||
| Gorret | ||||||||
| Zypher | ||||||||
496e_48d2
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5giraffe".
| Gorret | ||||||||
| Manticore | ||||||||
| Narloc | ||||||||
| Rynoth | ||||||||
| Lystra | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Lystra | ||||||||
| Narloc | ||||||||
| Rynoth | ||||||||
| Gorret | ||||||||
| Manticore | ||||||||
| Lystra | ||||||||
| Gorret | ||||||||
| Manticore | ||||||||
| Narloc | ||||||||
| Rynoth | ||||||||
| Narloc | ||||||||
| Rynoth | ||||||||
| Gorret | ||||||||
| Manticore | ||||||||
| Lystra | ||||||||
03e5_9f2c
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair1".
| Hydra | ||||||||
| Elwet | ||||||||
| Yawclor | ||||||||
| Phoenix | ||||||||
| Thorret | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Phoenix | ||||||||
| Thorret | ||||||||
| Elwet | ||||||||
| Hydra | ||||||||
| Yawclor | ||||||||
| Elwet | ||||||||
| Hydra | ||||||||
| Yawclor | ||||||||
| Phoenix | ||||||||
| Thorret | ||||||||
| Elwet | ||||||||
| Hydra | ||||||||
| Yawclor | ||||||||
| Phoenix | ||||||||
| Thorret | ||||||||
| Phoenix | ||||||||
| Thorret | ||||||||
| Elwet | ||||||||
| Yawclor | ||||||||
| Hydra | ||||||||
| Phoenix | ||||||||
| Thorret | ||||||||
| Yawclor | ||||||||
| Elwet | ||||||||
| Hydra | ||||||||
f9e1_bf6c
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5giraffe".
| Vyrax | ||||||||
| Gorret | ||||||||
| Sphinx | ||||||||
| Faylen | ||||||||
| Thorret | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Vyrax | ||||||||
| Gorret | ||||||||
| Sphinx | ||||||||
| Faylen | ||||||||
| Thorret | ||||||||
| Gorret | ||||||||
| Sphinx | ||||||||
| Faylen | ||||||||
| Thorret | ||||||||
| Vyrax | ||||||||
| Vyrax | ||||||||
| Faylen | ||||||||
| Thorret | ||||||||
| Gorret | ||||||||
| Sphinx | ||||||||
| Faylen | ||||||||
| Thorret | ||||||||
| Gorret | ||||||||
| Sphinx | ||||||||
| Vyrax | ||||||||
7cf1_1a12
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5giraffe".
| Faylen | ||||||||
| Ashen | ||||||||
| Yawclor | ||||||||
| Jackalope | ||||||||
| Oclora | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Ashen | ||||||||
| Jackalope | ||||||||
| Oclora | ||||||||
| Yawclor | ||||||||
| Faylen | ||||||||
| Faylen | ||||||||
| Ashen | ||||||||
| Yawclor | ||||||||
| Jackalope | ||||||||
| Oclora | ||||||||
| Jackalope | ||||||||
| Oclora | ||||||||
| Ashen | ||||||||
| Yawclor | ||||||||
| Faylen | ||||||||
| Jackalope | ||||||||
| Oclora | ||||||||
| Ashen | ||||||||
| Yawclor | ||||||||
| Faylen | ||||||||
d363_c7be
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5comb".
| Faylen | ||||||||
| Oclora | ||||||||
| Vyrax | ||||||||
| Xeraph | ||||||||
| Inktoad | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Xeraph | ||||||||
| Oclora | ||||||||
| Vyrax | ||||||||
| Faylen | ||||||||
| Inktoad | ||||||||
| Vyrax | ||||||||
| Xeraph | ||||||||
| Oclora | ||||||||
| Faylen | ||||||||
| Inktoad | ||||||||
| Faylen | ||||||||
| Vyrax | ||||||||
| Oclora | ||||||||
| Xeraph | ||||||||
| Inktoad | ||||||||
| Faylen | ||||||||
| Oclora | ||||||||
| Xeraph | ||||||||
| Vyrax | ||||||||
| Inktoad | ||||||||
| Inktoad | ||||||||
| Xeraph | ||||||||
| Oclora | ||||||||
| Vyrax | ||||||||
| Faylen | ||||||||
6461_4ac7
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5comb".
| Narloc | ||||||||
| Quokka | ||||||||
| Rynoth | ||||||||
| Lystra | ||||||||
| Ashen | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Ashen | ||||||||
| Narloc | ||||||||
| Quokka | ||||||||
| Lystra | ||||||||
| Rynoth | ||||||||
| Lystra | ||||||||
| Narloc | ||||||||
| Quokka | ||||||||
| Rynoth | ||||||||
| Ashen | ||||||||
| Ashen | ||||||||
| Lystra | ||||||||
| Rynoth | ||||||||
| Narloc | ||||||||
| Quokka | ||||||||
| Lystra | ||||||||
| Rynoth | ||||||||
| Narloc | ||||||||
| Quokka | ||||||||
| Ashen | ||||||||
| Lystra | ||||||||
| Narloc | ||||||||
| Rynoth | ||||||||
| Quokka | ||||||||
| Ashen | ||||||||
fe04_0cd2
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5giraffe".
| Vyrax | ||||||||
| Bellen | ||||||||
| Jackalope | ||||||||
| Lystra | ||||||||
| Yawclor | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Bellen | ||||||||
| Jackalope | ||||||||
| Lystra | ||||||||
| Yawclor | ||||||||
| Vyrax | ||||||||
| Lystra | ||||||||
| Yawclor | ||||||||
| Bellen | ||||||||
| Jackalope | ||||||||
| Vyrax | ||||||||
| Vyrax | ||||||||
| Lystra | ||||||||
| Yawclor | ||||||||
| Bellen | ||||||||
| Jackalope | ||||||||
a65c_5ce2
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5comb".
| Oclora | ||||||||
| Jackalope | ||||||||
| Chimera | ||||||||
| Faylen | ||||||||
| Vyrax | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Vyrax | ||||||||
| Oclora | ||||||||
| Chimera | ||||||||
| Faylen | ||||||||
| Jackalope | ||||||||
| Vyrax | ||||||||
| Faylen | ||||||||
| Chimera | ||||||||
| Jackalope | ||||||||
| Oclora | ||||||||
| Oclora | ||||||||
| Chimera | ||||||||
| Faylen | ||||||||
| Jackalope | ||||||||
| Vyrax | ||||||||
ff8b_4bb1
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair2".
| Inktoad | ||||||||
| Wyvern | ||||||||
| Chimera | ||||||||
| Elwet | ||||||||
| Gorret | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Inktoad | ||||||||
| Wyvern | ||||||||
| Chimera | ||||||||
| Elwet | ||||||||
| Gorret | ||||||||
| Inktoad | ||||||||
| Wyvern | ||||||||
| Gorret | ||||||||
| Chimera | ||||||||
| Elwet | ||||||||
| Inktoad | ||||||||
| Wyvern | ||||||||
| Gorret | ||||||||
| Chimera | ||||||||
| Elwet | ||||||||
720b_57cc
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair3".
| Jackalope | ||||||||
| Manticore | ||||||||
| Rynoth | ||||||||
| Narloc | ||||||||
| Zypher | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Narloc | ||||||||
| Zypher | ||||||||
| Jackalope | ||||||||
| Manticore | ||||||||
| Rynoth | ||||||||
| Narloc | ||||||||
| Zypher | ||||||||
| Manticore | ||||||||
| Jackalope | ||||||||
| Rynoth | ||||||||
| Narloc | ||||||||
| Zypher | ||||||||
| Jackalope | ||||||||
| Manticore | ||||||||
| Rynoth | ||||||||
| Manticore | ||||||||
| Jackalope | ||||||||
| Rynoth | ||||||||
| Narloc | ||||||||
| Zypher | ||||||||
f0b4_6fba
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5giraffe".
| Manticore | ||||||||
| Zypher | ||||||||
| Jackalope | ||||||||
| Thorret | ||||||||
| Elwet | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Elwet | ||||||||
| Jackalope | ||||||||
| Thorret | ||||||||
| Manticore | ||||||||
| Zypher | ||||||||
| Manticore | ||||||||
| Zypher | ||||||||
| Jackalope | ||||||||
| Thorret | ||||||||
| Elwet | ||||||||
| Jackalope | ||||||||
| Thorret | ||||||||
| Manticore | ||||||||
| Zypher | ||||||||
| Elwet | ||||||||
| Jackalope | ||||||||
| Thorret | ||||||||
| Manticore | ||||||||
| Zypher | ||||||||
| Elwet | ||||||||
576b_58db
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair2".
| Chimera | ||||||||
| Unicorn | ||||||||
| Elwet | ||||||||
| Quokka | ||||||||
| Kraken | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Elwet | ||||||||
| Quokka | ||||||||
| Kraken | ||||||||
| Chimera | ||||||||
| Unicorn | ||||||||
| Chimera | ||||||||
| Unicorn | ||||||||
| Kraken | ||||||||
| Elwet | ||||||||
| Quokka | ||||||||
| Chimera | ||||||||
| Unicorn | ||||||||
| Elwet | ||||||||
| Kraken | ||||||||
| Quokka | ||||||||
| Kraken | ||||||||
| Elwet | ||||||||
| Quokka | ||||||||
| Chimera | ||||||||
| Unicorn | ||||||||
827d_9a6e
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair2".
| Sphinx | ||||||||
| Wyvern | ||||||||
| Elwet | ||||||||
| Hydra | ||||||||
| Vyrax | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Sphinx | ||||||||
| Wyvern | ||||||||
| Elwet | ||||||||
| Hydra | ||||||||
| Vyrax | ||||||||
| Sphinx | ||||||||
| Wyvern | ||||||||
| Hydra | ||||||||
| Vyrax | ||||||||
| Elwet | ||||||||
| Sphinx | ||||||||
| Wyvern | ||||||||
| Hydra | ||||||||
| Vyrax | ||||||||
| Elwet | ||||||||
| Hydra | ||||||||
| Vyrax | ||||||||
| Elwet | ||||||||
| Sphinx | ||||||||
| Wyvern | ||||||||
f681_90a3
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair1".
| Faylen | ||||||||
| Hydra | ||||||||
| Wyvern | ||||||||
| Sphinx | ||||||||
| Yawclor | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Faylen | ||||||||
| Hydra | ||||||||
| Wyvern | ||||||||
| Yawclor | ||||||||
| Sphinx | ||||||||
| Faylen | ||||||||
| Hydra | ||||||||
| Yawclor | ||||||||
| Sphinx | ||||||||
| Wyvern | ||||||||
| Faylen | ||||||||
| Hydra | ||||||||
| Sphinx | ||||||||
| Yawclor | ||||||||
| Wyvern | ||||||||
4e78_4a64
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair1".
| Yawclor | ||||||||
| Chimera | ||||||||
| Faylen | ||||||||
| Gorret | ||||||||
| Wyvern | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Chimera | ||||||||
| Faylen | ||||||||
| Yawclor | ||||||||
| Gorret | ||||||||
| Wyvern | ||||||||
| Gorret | ||||||||
| Wyvern | ||||||||
| Yawclor | ||||||||
| Chimera | ||||||||
| Faylen | ||||||||
| Chimera | ||||||||
| Yawclor | ||||||||
| Faylen | ||||||||
| Gorret | ||||||||
| Wyvern | ||||||||
| Gorret | ||||||||
| Wyvern | ||||||||
| Chimera | ||||||||
| Faylen | ||||||||
| Yawclor | ||||||||
| Faylen | ||||||||
| Chimera | ||||||||
| Yawclor | ||||||||
| Gorret | ||||||||
| Wyvern | ||||||||
0423_b273
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair3".
| Manticore | ||||||||
| Dibblet | ||||||||
| Inktoad | ||||||||
| Rynoth | ||||||||
| Wyvern | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Rynoth | ||||||||
| Wyvern | ||||||||
| Dibblet | ||||||||
| Inktoad | ||||||||
| Manticore | ||||||||
| Rynoth | ||||||||
| Wyvern | ||||||||
| Dibblet | ||||||||
| Manticore | ||||||||
| Inktoad | ||||||||
| Rynoth | ||||||||
| Wyvern | ||||||||
| Dibblet | ||||||||
| Inktoad | ||||||||
| Manticore | ||||||||
| Dibblet | ||||||||
| Inktoad | ||||||||
| Manticore | ||||||||
| Rynoth | ||||||||
| Wyvern | ||||||||
c7b9_ce72
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair1".
| Chimera | ||||||||
| Rynoth | ||||||||
| Oclora | ||||||||
| Vyrax | ||||||||
| Jackalope | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Jackalope | ||||||||
| Oclora | ||||||||
| Vyrax | ||||||||
| Chimera | ||||||||
| Rynoth | ||||||||
| Chimera | ||||||||
| Rynoth | ||||||||
| Jackalope | ||||||||
| Vyrax | ||||||||
| Oclora | ||||||||
| Oclora | ||||||||
| Vyrax | ||||||||
| Jackalope | ||||||||
| Chimera | ||||||||
| Rynoth | ||||||||
| Jackalope | ||||||||
| Vyrax | ||||||||
| Oclora | ||||||||
| Chimera | ||||||||
| Rynoth | ||||||||
132f_97b7
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5comb".
| Lystra | ||||||||
| Phoenix | ||||||||
| Unicorn | ||||||||
| Kraken | ||||||||
| Gorret | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Kraken | ||||||||
| Unicorn | ||||||||
| Lystra | ||||||||
| Phoenix | ||||||||
| Gorret | ||||||||
| Gorret | ||||||||
| Kraken | ||||||||
| Unicorn | ||||||||
| Lystra | ||||||||
| Phoenix | ||||||||
| Lystra | ||||||||
| Unicorn | ||||||||
| Phoenix | ||||||||
| Kraken | ||||||||
| Gorret | ||||||||
| Gorret | ||||||||
| Lystra | ||||||||
| Phoenix | ||||||||
| Unicorn | ||||||||
| Kraken | ||||||||
3633_d033
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5giraffe".
| Gorret | ||||||||
| Jackalope | ||||||||
| Phoenix | ||||||||
| Yawclor | ||||||||
| Inktoad | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Inktoad | ||||||||
| Gorret | ||||||||
| Jackalope | ||||||||
| Phoenix | ||||||||
| Yawclor | ||||||||
| Inktoad | ||||||||
| Gorret | ||||||||
| Jackalope | ||||||||
| Phoenix | ||||||||
| Yawclor | ||||||||
| Gorret | ||||||||
| Jackalope | ||||||||
| Phoenix | ||||||||
| Yawclor | ||||||||
| Inktoad | ||||||||
| Inktoad | ||||||||
| Phoenix | ||||||||
| Yawclor | ||||||||
| Gorret | ||||||||
| Jackalope | ||||||||
3161_4088
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5giraffe".
| Elwet | ||||||||
| Gorret | ||||||||
| Thorret | ||||||||
| Dibblet | ||||||||
| Rynoth | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Gorret | ||||||||
| Thorret | ||||||||
| Rynoth | ||||||||
| Dibblet | ||||||||
| Elwet | ||||||||
| Dibblet | ||||||||
| Rynoth | ||||||||
| Gorret | ||||||||
| Thorret | ||||||||
| Elwet | ||||||||
| Dibblet | ||||||||
| Rynoth | ||||||||
| Gorret | ||||||||
| Thorret | ||||||||
| Elwet | ||||||||
| Elwet | ||||||||
| Gorret | ||||||||
| Thorret | ||||||||
| Dibblet | ||||||||
| Rynoth | ||||||||
368d_cf3e
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair3".
| Gorret | ||||||||
| Manticore | ||||||||
| Thorret | ||||||||
| Kraken | ||||||||
| Narloc | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Kraken | ||||||||
| Narloc | ||||||||
| Thorret | ||||||||
| Gorret | ||||||||
| Manticore | ||||||||
| Kraken | ||||||||
| Narloc | ||||||||
| Thorret | ||||||||
| Gorret | ||||||||
| Manticore | ||||||||
| Kraken | ||||||||
| Narloc | ||||||||
| Thorret | ||||||||
| Gorret | ||||||||
| Manticore | ||||||||
| Narloc | ||||||||
| Thorret | ||||||||
| Kraken | ||||||||
| Gorret | ||||||||
| Manticore | ||||||||
2b62_c888
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair3".
| Jackalope | ||||||||
| Bellen | ||||||||
| Inktoad | ||||||||
| Elwet | ||||||||
| Kraken | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Bellen | ||||||||
| Jackalope | ||||||||
| Inktoad | ||||||||
| Elwet | ||||||||
| Kraken | ||||||||
| Bellen | ||||||||
| Inktoad | ||||||||
| Jackalope | ||||||||
| Elwet | ||||||||
| Kraken | ||||||||
| Bellen | ||||||||
| Inktoad | ||||||||
| Jackalope | ||||||||
| Elwet | ||||||||
| Kraken | ||||||||
| Jackalope | ||||||||
| Bellen | ||||||||
| Inktoad | ||||||||
| Elwet | ||||||||
| Kraken | ||||||||
| Elwet | ||||||||
| Kraken | ||||||||
| Inktoad | ||||||||
| Jackalope | ||||||||
| Bellen | ||||||||
5a69_b5fa
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair3".
| Jackalope | ||||||||
| Oclora | ||||||||
| Xeraph | ||||||||
| Lystra | ||||||||
| Phoenix | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Jackalope | ||||||||
| Oclora | ||||||||
| Xeraph | ||||||||
| Lystra | ||||||||
| Phoenix | ||||||||
| Oclora | ||||||||
| Jackalope | ||||||||
| Xeraph | ||||||||
| Lystra | ||||||||
| Phoenix | ||||||||
| Lystra | ||||||||
| Phoenix | ||||||||
| Oclora | ||||||||
| Xeraph | ||||||||
| Jackalope | ||||||||
| Lystra | ||||||||
| Phoenix | ||||||||
| Jackalope | ||||||||
| Oclora | ||||||||
| Xeraph | ||||||||
6000_3a8c
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair1".
| Dibblet | ||||||||
| Lystra | ||||||||
| Narloc | ||||||||
| Thorret | ||||||||
| Manticore | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Manticore | ||||||||
| Thorret | ||||||||
| Narloc | ||||||||
| Dibblet | ||||||||
| Lystra | ||||||||
| Dibblet | ||||||||
| Lystra | ||||||||
| Narloc | ||||||||
| Manticore | ||||||||
| Thorret | ||||||||
| Narloc | ||||||||
| Thorret | ||||||||
| Manticore | ||||||||
| Dibblet | ||||||||
| Lystra | ||||||||
| Manticore | ||||||||
| Narloc | ||||||||
| Thorret | ||||||||
| Dibblet | ||||||||
| Lystra | ||||||||
6463_d1bf
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5giraffe".
| Vyrax | ||||||||
| Phoenix | ||||||||
| Yawclor | ||||||||
| Bellen | ||||||||
| Dibblet | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Vyrax | ||||||||
| Bellen | ||||||||
| Dibblet | ||||||||
| Phoenix | ||||||||
| Yawclor | ||||||||
| Phoenix | ||||||||
| Yawclor | ||||||||
| Bellen | ||||||||
| Dibblet | ||||||||
| Vyrax | ||||||||
| Vyrax | ||||||||
| Phoenix | ||||||||
| Yawclor | ||||||||
| Bellen | ||||||||
| Dibblet | ||||||||
| Yawclor | ||||||||
| Phoenix | ||||||||
| Bellen | ||||||||
| Dibblet | ||||||||
| Vyrax | ||||||||
| Phoenix | ||||||||
| Bellen | ||||||||
| Dibblet | ||||||||
| Yawclor | ||||||||
| Vyrax | ||||||||
442f_da55
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair2".
| Narloc | ||||||||
| Sphinx | ||||||||
| Jackalope | ||||||||
| Oclora | ||||||||
| Quokka | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Narloc | ||||||||
| Sphinx | ||||||||
| Quokka | ||||||||
| Jackalope | ||||||||
| Oclora | ||||||||
| Jackalope | ||||||||
| Quokka | ||||||||
| Oclora | ||||||||
| Narloc | ||||||||
| Sphinx | ||||||||
| Jackalope | ||||||||
| Oclora | ||||||||
| Quokka | ||||||||
| Narloc | ||||||||
| Sphinx | ||||||||
| Narloc | ||||||||
| Sphinx | ||||||||
| Quokka | ||||||||
| Jackalope | ||||||||
| Oclora | ||||||||
2074_66b6
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair1".
| Inktoad | ||||||||
| Rynoth | ||||||||
| Sphinx | ||||||||
| Bellen | ||||||||
| Jackalope | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Inktoad | ||||||||
| Rynoth | ||||||||
| Bellen | ||||||||
| Jackalope | ||||||||
| Sphinx | ||||||||
| Jackalope | ||||||||
| Sphinx | ||||||||
| Bellen | ||||||||
| Inktoad | ||||||||
| Rynoth | ||||||||
| Bellen | ||||||||
| Sphinx | ||||||||
| Jackalope | ||||||||
| Inktoad | ||||||||
| Rynoth | ||||||||
| Inktoad | ||||||||
| Rynoth | ||||||||
| Bellen | ||||||||
| Jackalope | ||||||||
| Sphinx | ||||||||
| Jackalope | ||||||||
| Bellen | ||||||||
| Sphinx | ||||||||
| Inktoad | ||||||||
| Rynoth | ||||||||
aac6_381a
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5giraffe".
| Rynoth | ||||||||
| Hydra | ||||||||
| Sphinx | ||||||||
| Phoenix | ||||||||
| Vyrax | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Hydra | ||||||||
| Sphinx | ||||||||
| Phoenix | ||||||||
| Vyrax | ||||||||
| Rynoth | ||||||||
| Rynoth | ||||||||
| Hydra | ||||||||
| Sphinx | ||||||||
| Phoenix | ||||||||
| Vyrax | ||||||||
| Phoenix | ||||||||
| Vyrax | ||||||||
| Hydra | ||||||||
| Sphinx | ||||||||
| Rynoth | ||||||||
| Rynoth | ||||||||
| Phoenix | ||||||||
| Vyrax | ||||||||
| Hydra | ||||||||
| Sphinx | ||||||||
| Phoenix | ||||||||
| Vyrax | ||||||||
| Hydra | ||||||||
| Sphinx | ||||||||
| Rynoth | ||||||||
8b66_2c28
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair3".
| Thorret | ||||||||
| Bellen | ||||||||
| Faylen | ||||||||
| Lystra | ||||||||
| Phoenix | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Faylen | ||||||||
| Bellen | ||||||||
| Thorret | ||||||||
| Lystra | ||||||||
| Phoenix | ||||||||
| Faylen | ||||||||
| Thorret | ||||||||
| Bellen | ||||||||
| Lystra | ||||||||
| Phoenix | ||||||||
| Lystra | ||||||||
| Phoenix | ||||||||
| Thorret | ||||||||
| Bellen | ||||||||
| Faylen | ||||||||
| Lystra | ||||||||
| Phoenix | ||||||||
| Thorret | ||||||||
| Bellen | ||||||||
| Faylen | ||||||||
1e96_e59b
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5giraffe".
| Narloc | ||||||||
| Rynoth | ||||||||
| Ashen | ||||||||
| Hydra | ||||||||
| Oclora | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Oclora | ||||||||
| Narloc | ||||||||
| Rynoth | ||||||||
| Ashen | ||||||||
| Hydra | ||||||||
| Oclora | ||||||||
| Narloc | ||||||||
| Rynoth | ||||||||
| Ashen | ||||||||
| Hydra | ||||||||
| Narloc | ||||||||
| Ashen | ||||||||
| Hydra | ||||||||
| Rynoth | ||||||||
| Oclora | ||||||||
| Oclora | ||||||||
| Narloc | ||||||||
| Ashen | ||||||||
| Hydra | ||||||||
| Rynoth | ||||||||
| Narloc | ||||||||
| Rynoth | ||||||||
| Ashen | ||||||||
| Hydra | ||||||||
| Oclora | ||||||||
7438_083c
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair3".
| Inktoad | ||||||||
| Yawclor | ||||||||
| Ashen | ||||||||
| Wyvern | ||||||||
| Elwet | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Inktoad | ||||||||
| Yawclor | ||||||||
| Elwet | ||||||||
| Ashen | ||||||||
| Wyvern | ||||||||
| Inktoad | ||||||||
| Yawclor | ||||||||
| Elwet | ||||||||
| Ashen | ||||||||
| Wyvern | ||||||||
| Inktoad | ||||||||
| Yawclor | ||||||||
| Wyvern | ||||||||
| Ashen | ||||||||
| Elwet | ||||||||
| Ashen | ||||||||
| Wyvern | ||||||||
| Elwet | ||||||||
| Inktoad | ||||||||
| Yawclor | ||||||||
3eb1_77e5
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair3".
| Elwet | ||||||||
| Inktoad | ||||||||
| Faylen | ||||||||
| Unicorn | ||||||||
| Xeraph | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Elwet | ||||||||
| Faylen | ||||||||
| Inktoad | ||||||||
| Unicorn | ||||||||
| Xeraph | ||||||||
| Inktoad | ||||||||
| Elwet | ||||||||
| Faylen | ||||||||
| Unicorn | ||||||||
| Xeraph | ||||||||
| Unicorn | ||||||||
| Xeraph | ||||||||
| Inktoad | ||||||||
| Elwet | ||||||||
| Faylen | ||||||||
| Elwet | ||||||||
| Inktoad | ||||||||
| Faylen | ||||||||
| Unicorn | ||||||||
| Xeraph | ||||||||
| Faylen | ||||||||
| Elwet | ||||||||
| Inktoad | ||||||||
| Unicorn | ||||||||
| Xeraph | ||||||||
a064_19d7
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5comb".
| Quokka | ||||||||
| Narloc | ||||||||
| Yawclor | ||||||||
| Vyrax | ||||||||
| Dibblet | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Dibblet | ||||||||
| Narloc | ||||||||
| Yawclor | ||||||||
| Quokka | ||||||||
| Vyrax | ||||||||
| Dibblet | ||||||||
| Narloc | ||||||||
| Quokka | ||||||||
| Yawclor | ||||||||
| Vyrax | ||||||||
| Vyrax | ||||||||
| Quokka | ||||||||
| Narloc | ||||||||
| Yawclor | ||||||||
| Dibblet | ||||||||
| Dibblet | ||||||||
| Vyrax | ||||||||
| Narloc | ||||||||
| Quokka | ||||||||
| Yawclor | ||||||||
7a37_f960
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair1".
| Narloc | ||||||||
| Wyvern | ||||||||
| Yawclor | ||||||||
| Gorret | ||||||||
| Lystra | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Yawclor | ||||||||
| Narloc | ||||||||
| Wyvern | ||||||||
| Gorret | ||||||||
| Lystra | ||||||||
| Wyvern | ||||||||
| Narloc | ||||||||
| Yawclor | ||||||||
| Gorret | ||||||||
| Lystra | ||||||||
| Wyvern | ||||||||
| Yawclor | ||||||||
| Narloc | ||||||||
| Gorret | ||||||||
| Lystra | ||||||||
6f0a_8841
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair3".
| Thorret | ||||||||
| Xeraph | ||||||||
| Unicorn | ||||||||
| Gorret | ||||||||
| Oclora | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Gorret | ||||||||
| Oclora | ||||||||
| Unicorn | ||||||||
| Thorret | ||||||||
| Xeraph | ||||||||
| Thorret | ||||||||
| Xeraph | ||||||||
| Gorret | ||||||||
| Oclora | ||||||||
| Unicorn | ||||||||
| Unicorn | ||||||||
| Gorret | ||||||||
| Oclora | ||||||||
| Thorret | ||||||||
| Xeraph | ||||||||
| Unicorn | ||||||||
| Gorret | ||||||||
| Oclora | ||||||||
| Thorret | ||||||||
| Xeraph | ||||||||
| Thorret | ||||||||
| Xeraph | ||||||||
| Oclora | ||||||||
| Gorret | ||||||||
| Unicorn | ||||||||
2b80_bd76
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5giraffe".
| Inktoad | ||||||||
| Gorret | ||||||||
| Unicorn | ||||||||
| Chimera | ||||||||
| Hydra | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Gorret | ||||||||
| Unicorn | ||||||||
| Chimera | ||||||||
| Hydra | ||||||||
| Inktoad | ||||||||
| Chimera | ||||||||
| Hydra | ||||||||
| Gorret | ||||||||
| Unicorn | ||||||||
| Inktoad | ||||||||
| Inktoad | ||||||||
| Gorret | ||||||||
| Unicorn | ||||||||
| Chimera | ||||||||
| Hydra | ||||||||
d042_a459
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair1".
| Lystra | ||||||||
| Thorret | ||||||||
| Wyvern | ||||||||
| Chimera | ||||||||
| Inktoad | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Inktoad | ||||||||
| Wyvern | ||||||||
| Chimera | ||||||||
| Lystra | ||||||||
| Thorret | ||||||||
| Lystra | ||||||||
| Thorret | ||||||||
| Chimera | ||||||||
| Inktoad | ||||||||
| Wyvern | ||||||||
| Chimera | ||||||||
| Inktoad | ||||||||
| Wyvern | ||||||||
| Lystra | ||||||||
| Thorret | ||||||||
| Lystra | ||||||||
| Thorret | ||||||||
| Inktoad | ||||||||
| Wyvern | ||||||||
| Chimera | ||||||||
| Inktoad | ||||||||
| Chimera | ||||||||
| Wyvern | ||||||||
| Lystra | ||||||||
| Thorret | ||||||||
9353_7c84
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair3".
| Sphinx | ||||||||
| Faylen | ||||||||
| Hydra | ||||||||
| Gorret | ||||||||
| Quokka | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Gorret | ||||||||
| Quokka | ||||||||
| Hydra | ||||||||
| Faylen | ||||||||
| Sphinx | ||||||||
| Faylen | ||||||||
| Hydra | ||||||||
| Sphinx | ||||||||
| Gorret | ||||||||
| Quokka | ||||||||
| Faylen | ||||||||
| Hydra | ||||||||
| Sphinx | ||||||||
| Gorret | ||||||||
| Quokka | ||||||||
| Gorret | ||||||||
| Quokka | ||||||||
| Faylen | ||||||||
| Hydra | ||||||||
| Sphinx | ||||||||
3f55_0286
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair1".
| Elwet | ||||||||
| Phoenix | ||||||||
| Gorret | ||||||||
| Lystra | ||||||||
| Quokka | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Elwet | ||||||||
| Phoenix | ||||||||
| Lystra | ||||||||
| Quokka | ||||||||
| Gorret | ||||||||
| Elwet | ||||||||
| Phoenix | ||||||||
| Gorret | ||||||||
| Lystra | ||||||||
| Quokka | ||||||||
| Elwet | ||||||||
| Phoenix | ||||||||
| Gorret | ||||||||
| Quokka | ||||||||
| Lystra | ||||||||
| Lystra | ||||||||
| Gorret | ||||||||
| Quokka | ||||||||
| Elwet | ||||||||
| Phoenix | ||||||||
| Quokka | ||||||||
| Gorret | ||||||||
| Lystra | ||||||||
| Elwet | ||||||||
| Phoenix | ||||||||
59d0_5ce0
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair2".
| Gorret | ||||||||
| Jackalope | ||||||||
| Unicorn | ||||||||
| Quokka | ||||||||
| Sphinx | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Gorret | ||||||||
| Jackalope | ||||||||
| Unicorn | ||||||||
| Quokka | ||||||||
| Sphinx | ||||||||
| Gorret | ||||||||
| Jackalope | ||||||||
| Quokka | ||||||||
| Unicorn | ||||||||
| Sphinx | ||||||||
| Unicorn | ||||||||
| Quokka | ||||||||
| Sphinx | ||||||||
| Gorret | ||||||||
| Jackalope | ||||||||
| Quokka | ||||||||
| Sphinx | ||||||||
| Unicorn | ||||||||
| Gorret | ||||||||
| Jackalope | ||||||||
6a73_f230
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair3".
| Phoenix | ||||||||
| Unicorn | ||||||||
| Lystra | ||||||||
| Wyvern | ||||||||
| Inktoad | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Inktoad | ||||||||
| Lystra | ||||||||
| Wyvern | ||||||||
| Phoenix | ||||||||
| Unicorn | ||||||||
| Phoenix | ||||||||
| Unicorn | ||||||||
| Inktoad | ||||||||
| Lystra | ||||||||
| Wyvern | ||||||||
| Inktoad | ||||||||
| Wyvern | ||||||||
| Lystra | ||||||||
| Phoenix | ||||||||
| Unicorn | ||||||||
| Phoenix | ||||||||
| Unicorn | ||||||||
| Inktoad | ||||||||
| Lystra | ||||||||
| Wyvern | ||||||||
| Phoenix | ||||||||
| Unicorn | ||||||||
| Inktoad | ||||||||
| Lystra | ||||||||
| Wyvern | ||||||||
44a5_e6ae
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair2".
| Phoenix | ||||||||
| Oclora | ||||||||
| Yawclor | ||||||||
| Chimera | ||||||||
| Thorret | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Phoenix | ||||||||
| Oclora | ||||||||
| Yawclor | ||||||||
| Chimera | ||||||||
| Thorret | ||||||||
| Chimera | ||||||||
| Thorret | ||||||||
| Phoenix | ||||||||
| Oclora | ||||||||
| Yawclor | ||||||||
| Chimera | ||||||||
| Thorret | ||||||||
| Phoenix | ||||||||
| Yawclor | ||||||||
| Oclora | ||||||||
| Chimera | ||||||||
| Thorret | ||||||||
| Phoenix | ||||||||
| Oclora | ||||||||
| Yawclor | ||||||||
| Oclora | ||||||||
| Yawclor | ||||||||
| Phoenix | ||||||||
| Chimera | ||||||||
| Thorret | ||||||||
7adf_f1f7
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5giraffe".
| Lystra | ||||||||
| Unicorn | ||||||||
| Faylen | ||||||||
| Quokka | ||||||||
| Manticore | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Unicorn | ||||||||
| Lystra | ||||||||
| Faylen | ||||||||
| Quokka | ||||||||
| Manticore | ||||||||
| Manticore | ||||||||
| Faylen | ||||||||
| Quokka | ||||||||
| Lystra | ||||||||
| Unicorn | ||||||||
| Manticore | ||||||||
| Lystra | ||||||||
| Unicorn | ||||||||
| Faylen | ||||||||
| Quokka | ||||||||
a9c8_7af3
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair3".
| Hydra | ||||||||
| Xeraph | ||||||||
| Lystra | ||||||||
| Dibblet | ||||||||
| Thorret | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Dibblet | ||||||||
| Thorret | ||||||||
| Hydra | ||||||||
| Lystra | ||||||||
| Xeraph | ||||||||
| Dibblet | ||||||||
| Thorret | ||||||||
| Hydra | ||||||||
| Xeraph | ||||||||
| Lystra | ||||||||
| Dibblet | ||||||||
| Thorret | ||||||||
| Lystra | ||||||||
| Hydra | ||||||||
| Xeraph | ||||||||
| Hydra | ||||||||
| Lystra | ||||||||
| Xeraph | ||||||||
| Dibblet | ||||||||
| Thorret | ||||||||
| Dibblet | ||||||||
| Thorret | ||||||||
| Xeraph | ||||||||
| Hydra | ||||||||
| Lystra | ||||||||
c1ef_fc6f
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair1".
| Bellen | ||||||||
| Kraken | ||||||||
| Oclora | ||||||||
| Gorret | ||||||||
| Sphinx | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Bellen | ||||||||
| Kraken | ||||||||
| Gorret | ||||||||
| Oclora | ||||||||
| Sphinx | ||||||||
| Oclora | ||||||||
| Sphinx | ||||||||
| Gorret | ||||||||
| Bellen | ||||||||
| Kraken | ||||||||
| Gorret | ||||||||
| Oclora | ||||||||
| Sphinx | ||||||||
| Bellen | ||||||||
| Kraken | ||||||||
| Bellen | ||||||||
| Kraken | ||||||||
| Gorret | ||||||||
| Sphinx | ||||||||
| Oclora | ||||||||
| Bellen | ||||||||
| Kraken | ||||||||
| Oclora | ||||||||
| Sphinx | ||||||||
| Gorret | ||||||||
1001_7d51
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5giraffe".
| Sphinx | ||||||||
| Zypher | ||||||||
| Elwet | ||||||||
| Phoenix | ||||||||
| Kraken | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Kraken | ||||||||
| Sphinx | ||||||||
| Zypher | ||||||||
| Elwet | ||||||||
| Phoenix | ||||||||
| Kraken | ||||||||
| Sphinx | ||||||||
| Zypher | ||||||||
| Elwet | ||||||||
| Phoenix | ||||||||
| Kraken | ||||||||
| Sphinx | ||||||||
| Zypher | ||||||||
| Elwet | ||||||||
| Phoenix | ||||||||
| Sphinx | ||||||||
| Zypher | ||||||||
| Elwet | ||||||||
| Phoenix | ||||||||
| Kraken | ||||||||
4b06_3dbb
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair1".
| Lystra | ||||||||
| Oclora | ||||||||
| Chimera | ||||||||
| Vyrax | ||||||||
| Manticore | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Chimera | ||||||||
| Manticore | ||||||||
| Vyrax | ||||||||
| Lystra | ||||||||
| Oclora | ||||||||
| Lystra | ||||||||
| Oclora | ||||||||
| Vyrax | ||||||||
| Chimera | ||||||||
| Manticore | ||||||||
| Lystra | ||||||||
| Oclora | ||||||||
| Manticore | ||||||||
| Chimera | ||||||||
| Vyrax | ||||||||
| Manticore | ||||||||
| Vyrax | ||||||||
| Chimera | ||||||||
| Lystra | ||||||||
| Oclora | ||||||||
433b_8dfb
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair2".
| Chimera | ||||||||
| Kraken | ||||||||
| Bellen | ||||||||
| Phoenix | ||||||||
| Manticore | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Chimera | ||||||||
| Kraken | ||||||||
| Bellen | ||||||||
| Phoenix | ||||||||
| Manticore | ||||||||
| Chimera | ||||||||
| Kraken | ||||||||
| Manticore | ||||||||
| Bellen | ||||||||
| Phoenix | ||||||||
| Bellen | ||||||||
| Phoenix | ||||||||
| Manticore | ||||||||
| Chimera | ||||||||
| Kraken | ||||||||
| Chimera | ||||||||
| Kraken | ||||||||
| Phoenix | ||||||||
| Bellen | ||||||||
| Manticore | ||||||||
6a68_3f37
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5giraffe".
| Kraken | ||||||||
| Unicorn | ||||||||
| Lystra | ||||||||
| Oclora | ||||||||
| Elwet | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Lystra | ||||||||
| Oclora | ||||||||
| Kraken | ||||||||
| Unicorn | ||||||||
| Elwet | ||||||||
| Elwet | ||||||||
| Lystra | ||||||||
| Oclora | ||||||||
| Kraken | ||||||||
| Unicorn | ||||||||
| Kraken | ||||||||
| Unicorn | ||||||||
| Lystra | ||||||||
| Oclora | ||||||||
| Elwet | ||||||||
| Lystra | ||||||||
| Oclora | ||||||||
| Kraken | ||||||||
| Unicorn | ||||||||
| Elwet | ||||||||
3e6e_a8ad
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair1".
| Hydra | ||||||||
| Unicorn | ||||||||
| Chimera | ||||||||
| Bellen | ||||||||
| Oclora | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Hydra | ||||||||
| Unicorn | ||||||||
| Bellen | ||||||||
| Chimera | ||||||||
| Oclora | ||||||||
| Hydra | ||||||||
| Unicorn | ||||||||
| Bellen | ||||||||
| Oclora | ||||||||
| Chimera | ||||||||
| Bellen | ||||||||
| Chimera | ||||||||
| Oclora | ||||||||
| Hydra | ||||||||
| Unicorn | ||||||||
| Bellen | ||||||||
| Chimera | ||||||||
| Oclora | ||||||||
| Hydra | ||||||||
| Unicorn | ||||||||
| Hydra | ||||||||
| Unicorn | ||||||||
| Oclora | ||||||||
| Bellen | ||||||||
| Chimera | ||||||||
00eb_68a2
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair1".
| Manticore | ||||||||
| Ashen | ||||||||
| Yawclor | ||||||||
| Kraken | ||||||||
| Thorret | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Kraken | ||||||||
| Thorret | ||||||||
| Ashen | ||||||||
| Manticore | ||||||||
| Yawclor | ||||||||
| Ashen | ||||||||
| Manticore | ||||||||
| Yawclor | ||||||||
| Kraken | ||||||||
| Thorret | ||||||||
| Kraken | ||||||||
| Thorret | ||||||||
| Ashen | ||||||||
| Yawclor | ||||||||
| Manticore | ||||||||
| Kraken | ||||||||
| Thorret | ||||||||
| Manticore | ||||||||
| Yawclor | ||||||||
| Ashen | ||||||||
| Yawclor | ||||||||
| Ashen | ||||||||
| Manticore | ||||||||
| Kraken | ||||||||
| Thorret | ||||||||
f4cf_f62a
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5giraffe".
| Sphinx | ||||||||
| Bellen | ||||||||
| Gorret | ||||||||
| Jackalope | ||||||||
| Lystra | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Sphinx | ||||||||
| Jackalope | ||||||||
| Lystra | ||||||||
| Bellen | ||||||||
| Gorret | ||||||||
| Gorret | ||||||||
| Bellen | ||||||||
| Jackalope | ||||||||
| Lystra | ||||||||
| Sphinx | ||||||||
| Bellen | ||||||||
| Gorret | ||||||||
| Jackalope | ||||||||
| Lystra | ||||||||
| Sphinx | ||||||||
| Bellen | ||||||||
| Gorret | ||||||||
| Jackalope | ||||||||
| Lystra | ||||||||
| Sphinx | ||||||||
37e3_6f55
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair3".
| Dibblet | ||||||||
| Lystra | ||||||||
| Sphinx | ||||||||
| Zypher | ||||||||
| Yawclor | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Sphinx | ||||||||
| Zypher | ||||||||
| Yawclor | ||||||||
| Dibblet | ||||||||
| Lystra | ||||||||
| Dibblet | ||||||||
| Lystra | ||||||||
| Yawclor | ||||||||
| Sphinx | ||||||||
| Zypher | ||||||||
| Yawclor | ||||||||
| Sphinx | ||||||||
| Zypher | ||||||||
| Dibblet | ||||||||
| Lystra | ||||||||
| Sphinx | ||||||||
| Yawclor | ||||||||
| Zypher | ||||||||
| Dibblet | ||||||||
| Lystra | ||||||||
| Dibblet | ||||||||
| Lystra | ||||||||
| Sphinx | ||||||||
| Yawclor | ||||||||
| Zypher | ||||||||
9814_c4db
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5comb".
| Jackalope | ||||||||
| Bellen | ||||||||
| Gorret | ||||||||
| Sphinx | ||||||||
| Unicorn | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Bellen | ||||||||
| Gorret | ||||||||
| Sphinx | ||||||||
| Jackalope | ||||||||
| Unicorn | ||||||||
| Jackalope | ||||||||
| Sphinx | ||||||||
| Bellen | ||||||||
| Gorret | ||||||||
| Unicorn | ||||||||
| Unicorn | ||||||||
| Jackalope | ||||||||
| Bellen | ||||||||
| Sphinx | ||||||||
| Gorret | ||||||||
| Gorret | ||||||||
| Sphinx | ||||||||
| Bellen | ||||||||
| Jackalope | ||||||||
| Unicorn | ||||||||
| Unicorn | ||||||||
| Bellen | ||||||||
| Jackalope | ||||||||
| Gorret | ||||||||
| Sphinx | ||||||||
1f41_d2d0
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5giraffe".
| Thorret | ||||||||
| Phoenix | ||||||||
| Unicorn | ||||||||
| Bellen | ||||||||
| Zypher | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Thorret | ||||||||
| Bellen | ||||||||
| Zypher | ||||||||
| Unicorn | ||||||||
| Phoenix | ||||||||
| Phoenix | ||||||||
| Unicorn | ||||||||
| Bellen | ||||||||
| Zypher | ||||||||
| Thorret | ||||||||
| Thorret | ||||||||
| Phoenix | ||||||||
| Unicorn | ||||||||
| Bellen | ||||||||
| Zypher | ||||||||
| Phoenix | ||||||||
| Unicorn | ||||||||
| Bellen | ||||||||
| Zypher | ||||||||
| Thorret | ||||||||
a2aa_0932
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5giraffe".
| Lystra | ||||||||
| Narloc | ||||||||
| Faylen | ||||||||
| Xeraph | ||||||||
| Ashen | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Xeraph | ||||||||
| Lystra | ||||||||
| Narloc | ||||||||
| Faylen | ||||||||
| Ashen | ||||||||
| Ashen | ||||||||
| Lystra | ||||||||
| Narloc | ||||||||
| Faylen | ||||||||
| Xeraph | ||||||||
| Ashen | ||||||||
| Lystra | ||||||||
| Narloc | ||||||||
| Faylen | ||||||||
| Xeraph | ||||||||
| Faylen | ||||||||
| Lystra | ||||||||
| Narloc | ||||||||
| Xeraph | ||||||||
| Ashen | ||||||||
| Lystra | ||||||||
| Narloc | ||||||||
| Faylen | ||||||||
| Xeraph | ||||||||
| Ashen | ||||||||
7b84_63c7
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair1".
| Manticore | ||||||||
| Quokka | ||||||||
| Unicorn | ||||||||
| Kraken | ||||||||
| Thorret | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Manticore | ||||||||
| Quokka | ||||||||
| Kraken | ||||||||
| Thorret | ||||||||
| Unicorn | ||||||||
| Thorret | ||||||||
| Unicorn | ||||||||
| Kraken | ||||||||
| Manticore | ||||||||
| Quokka | ||||||||
| Kraken | ||||||||
| Thorret | ||||||||
| Unicorn | ||||||||
| Manticore | ||||||||
| Quokka | ||||||||
| Kraken | ||||||||
| Unicorn | ||||||||
| Thorret | ||||||||
| Manticore | ||||||||
| Quokka | ||||||||
a3fa_a477
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair1".
| Vyrax | ||||||||
| Wyvern | ||||||||
| Hydra | ||||||||
| Xeraph | ||||||||
| Ashen | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Vyrax | ||||||||
| Wyvern | ||||||||
| Ashen | ||||||||
| Hydra | ||||||||
| Xeraph | ||||||||
| Xeraph | ||||||||
| Ashen | ||||||||
| Hydra | ||||||||
| Vyrax | ||||||||
| Wyvern | ||||||||
| Ashen | ||||||||
| Xeraph | ||||||||
| Hydra | ||||||||
| Vyrax | ||||||||
| Wyvern | ||||||||
| Hydra | ||||||||
| Ashen | ||||||||
| Xeraph | ||||||||
| Vyrax | ||||||||
| Wyvern | ||||||||
79f7_1620
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair3".
| Manticore | ||||||||
| Sphinx | ||||||||
| Kraken | ||||||||
| Narloc | ||||||||
| Wyvern | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Narloc | ||||||||
| Wyvern | ||||||||
| Kraken | ||||||||
| Manticore | ||||||||
| Sphinx | ||||||||
| Narloc | ||||||||
| Wyvern | ||||||||
| Kraken | ||||||||
| Sphinx | ||||||||
| Manticore | ||||||||
| Narloc | ||||||||
| Wyvern | ||||||||
| Manticore | ||||||||
| Sphinx | ||||||||
| Kraken | ||||||||
| Narloc | ||||||||
| Wyvern | ||||||||
| Kraken | ||||||||
| Manticore | ||||||||
| Sphinx | ||||||||
| Kraken | ||||||||
| Sphinx | ||||||||
| Manticore | ||||||||
| Narloc | ||||||||
| Wyvern | ||||||||
055c_6ef3
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair2".
| Ashen | ||||||||
| Quokka | ||||||||
| Bellen | ||||||||
| Xeraph | ||||||||
| Wyvern | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Ashen | ||||||||
| Quokka | ||||||||
| Bellen | ||||||||
| Xeraph | ||||||||
| Wyvern | ||||||||
| Bellen | ||||||||
| Xeraph | ||||||||
| Wyvern | ||||||||
| Ashen | ||||||||
| Quokka | ||||||||
| Ashen | ||||||||
| Quokka | ||||||||
| Wyvern | ||||||||
| Bellen | ||||||||
| Xeraph | ||||||||
| Ashen | ||||||||
| Quokka | ||||||||
| Wyvern | ||||||||
| Bellen | ||||||||
| Xeraph | ||||||||
abf0_81d9
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair1".
| Dibblet | ||||||||
| Gorret | ||||||||
| Unicorn | ||||||||
| Elwet | ||||||||
| Manticore | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Elwet | ||||||||
| Manticore | ||||||||
| Gorret | ||||||||
| Unicorn | ||||||||
| Dibblet | ||||||||
| Gorret | ||||||||
| Unicorn | ||||||||
| Dibblet | ||||||||
| Elwet | ||||||||
| Manticore | ||||||||
| Dibblet | ||||||||
| Unicorn | ||||||||
| Gorret | ||||||||
| Elwet | ||||||||
| Manticore | ||||||||
| Elwet | ||||||||
| Manticore | ||||||||
| Dibblet | ||||||||
| Gorret | ||||||||
| Unicorn | ||||||||
7361_0c14
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5comb".
| Chimera | ||||||||
| Unicorn | ||||||||
| Gorret | ||||||||
| Yawclor | ||||||||
| Rynoth | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Chimera | ||||||||
| Gorret | ||||||||
| Unicorn | ||||||||
| Yawclor | ||||||||
| Rynoth | ||||||||
| Yawclor | ||||||||
| Unicorn | ||||||||
| Chimera | ||||||||
| Gorret | ||||||||
| Rynoth | ||||||||
| Rynoth | ||||||||
| Yawclor | ||||||||
| Gorret | ||||||||
| Chimera | ||||||||
| Unicorn | ||||||||
| Chimera | ||||||||
| Gorret | ||||||||
| Unicorn | ||||||||
| Yawclor | ||||||||
| Rynoth | ||||||||
| Chimera | ||||||||
| Unicorn | ||||||||
| Gorret | ||||||||
| Yawclor | ||||||||
| Rynoth | ||||||||
5fee_da59
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5giraffe".
| Bellen | ||||||||
| Hydra | ||||||||
| Inktoad | ||||||||
| Ashen | ||||||||
| Quokka | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Bellen | ||||||||
| Ashen | ||||||||
| Quokka | ||||||||
| Hydra | ||||||||
| Inktoad | ||||||||
| Hydra | ||||||||
| Inktoad | ||||||||
| Ashen | ||||||||
| Quokka | ||||||||
| Bellen | ||||||||
| Bellen | ||||||||
| Ashen | ||||||||
| Quokka | ||||||||
| Hydra | ||||||||
| Inktoad | ||||||||
| Ashen | ||||||||
| Quokka | ||||||||
| Hydra | ||||||||
| Inktoad | ||||||||
| Bellen | ||||||||
a215_1308
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair1".
| Oclora | ||||||||
| Faylen | ||||||||
| Vyrax | ||||||||
| Gorret | ||||||||
| Wyvern | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Faylen | ||||||||
| Vyrax | ||||||||
| Oclora | ||||||||
| Gorret | ||||||||
| Wyvern | ||||||||
| Gorret | ||||||||
| Wyvern | ||||||||
| Faylen | ||||||||
| Oclora | ||||||||
| Vyrax | ||||||||
| Gorret | ||||||||
| Wyvern | ||||||||
| Faylen | ||||||||
| Oclora | ||||||||
| Vyrax | ||||||||
| Faylen | ||||||||
| Oclora | ||||||||
| Vyrax | ||||||||
| Gorret | ||||||||
| Wyvern | ||||||||
| Vyrax | ||||||||
| Faylen | ||||||||
| Oclora | ||||||||
| Gorret | ||||||||
| Wyvern | ||||||||
d24e_125a
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair2".
| Hydra | ||||||||
| Sphinx | ||||||||
| Dibblet | ||||||||
| Unicorn | ||||||||
| Zypher | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Zypher | ||||||||
| Dibblet | ||||||||
| Unicorn | ||||||||
| Hydra | ||||||||
| Sphinx | ||||||||
| Hydra | ||||||||
| Sphinx | ||||||||
| Zypher | ||||||||
| Dibblet | ||||||||
| Unicorn | ||||||||
| Hydra | ||||||||
| Sphinx | ||||||||
| Zypher | ||||||||
| Dibblet | ||||||||
| Unicorn | ||||||||
| Unicorn | ||||||||
| Dibblet | ||||||||
| Zypher | ||||||||
| Hydra | ||||||||
| Sphinx | ||||||||
| Unicorn | ||||||||
| Zypher | ||||||||
| Dibblet | ||||||||
| Hydra | ||||||||
| Sphinx | ||||||||
ce27_925f
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5comb".
| Gorret | ||||||||
| Kraken | ||||||||
| Faylen | ||||||||
| Elwet | ||||||||
| Rynoth | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Kraken | ||||||||
| Elwet | ||||||||
| Rynoth | ||||||||
| Faylen | ||||||||
| Gorret | ||||||||
| Elwet | ||||||||
| Rynoth | ||||||||
| Faylen | ||||||||
| Kraken | ||||||||
| Gorret | ||||||||
| Kraken | ||||||||
| Faylen | ||||||||
| Rynoth | ||||||||
| Elwet | ||||||||
| Gorret | ||||||||
| Kraken | ||||||||
| Elwet | ||||||||
| Faylen | ||||||||
| Rynoth | ||||||||
| Gorret | ||||||||
| Faylen | ||||||||
| Rynoth | ||||||||
| Elwet | ||||||||
| Kraken | ||||||||
| Gorret | ||||||||
73d1_ed9b
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair3".
| Lystra | ||||||||
| Thorret | ||||||||
| Sphinx | ||||||||
| Ashen | ||||||||
| Phoenix | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Lystra | ||||||||
| Thorret | ||||||||
| Ashen | ||||||||
| Phoenix | ||||||||
| Sphinx | ||||||||
| Sphinx | ||||||||
| Ashen | ||||||||
| Phoenix | ||||||||
| Lystra | ||||||||
| Thorret | ||||||||
| Lystra | ||||||||
| Thorret | ||||||||
| Ashen | ||||||||
| Sphinx | ||||||||
| Phoenix | ||||||||
| Phoenix | ||||||||
| Ashen | ||||||||
| Sphinx | ||||||||
| Lystra | ||||||||
| Thorret | ||||||||
| Sphinx | ||||||||
| Ashen | ||||||||
| Phoenix | ||||||||
| Lystra | ||||||||
| Thorret | ||||||||
e516_be42
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair2".
| Ashen | ||||||||
| Phoenix | ||||||||
| Rynoth | ||||||||
| Dibblet | ||||||||
| Wyvern | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Phoenix | ||||||||
| Rynoth | ||||||||
| Ashen | ||||||||
| Dibblet | ||||||||
| Wyvern | ||||||||
| Phoenix | ||||||||
| Rynoth | ||||||||
| Ashen | ||||||||
| Dibblet | ||||||||
| Wyvern | ||||||||
| Ashen | ||||||||
| Rynoth | ||||||||
| Phoenix | ||||||||
| Dibblet | ||||||||
| Wyvern | ||||||||
| Phoenix | ||||||||
| Ashen | ||||||||
| Rynoth | ||||||||
| Dibblet | ||||||||
| Wyvern | ||||||||
| Dibblet | ||||||||
| Wyvern | ||||||||
| Phoenix | ||||||||
| Rynoth | ||||||||
| Ashen | ||||||||
304e_26f7
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5comb".
| Faylen | ||||||||
| Kraken | ||||||||
| Yawclor | ||||||||
| Ashen | ||||||||
| Bellen | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Bellen | ||||||||
| Ashen | ||||||||
| Kraken | ||||||||
| Faylen | ||||||||
| Yawclor | ||||||||
| Faylen | ||||||||
| Yawclor | ||||||||
| Kraken | ||||||||
| Ashen | ||||||||
| Bellen | ||||||||
| Ashen | ||||||||
| Faylen | ||||||||
| Kraken | ||||||||
| Yawclor | ||||||||
| Bellen | ||||||||
| Bellen | ||||||||
| Faylen | ||||||||
| Kraken | ||||||||
| Yawclor | ||||||||
| Ashen | ||||||||
| Kraken | ||||||||
| Yawclor | ||||||||
| Faylen | ||||||||
| Ashen | ||||||||
| Bellen | ||||||||
71ee_3e9e
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5comb".
| Kraken | ||||||||
| Ashen | ||||||||
| Bellen | ||||||||
| Gorret | ||||||||
| Phoenix | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Kraken | ||||||||
| Bellen | ||||||||
| Gorret | ||||||||
| Phoenix | ||||||||
| Ashen | ||||||||
| Gorret | ||||||||
| Phoenix | ||||||||
| Bellen | ||||||||
| Ashen | ||||||||
| Kraken | ||||||||
| Kraken | ||||||||
| Ashen | ||||||||
| Bellen | ||||||||
| Gorret | ||||||||
| Phoenix | ||||||||
| Kraken | ||||||||
| Gorret | ||||||||
| Phoenix | ||||||||
| Ashen | ||||||||
| Bellen | ||||||||
| Ashen | ||||||||
| Bellen | ||||||||
| Gorret | ||||||||
| Phoenix | ||||||||
| Kraken | ||||||||
c5a8_0266
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair2".
| Kraken | ||||||||
| Wyvern | ||||||||
| Dibblet | ||||||||
| Ashen | ||||||||
| Narloc | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Dibblet | ||||||||
| Kraken | ||||||||
| Wyvern | ||||||||
| Ashen | ||||||||
| Narloc | ||||||||
| Kraken | ||||||||
| Wyvern | ||||||||
| Dibblet | ||||||||
| Ashen | ||||||||
| Narloc | ||||||||
| Ashen | ||||||||
| Narloc | ||||||||
| Kraken | ||||||||
| Wyvern | ||||||||
| Dibblet | ||||||||
| Dibblet | ||||||||
| Kraken | ||||||||
| Wyvern | ||||||||
| Ashen | ||||||||
| Narloc | ||||||||
2e6d_ae7e
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair3".
| Ashen | ||||||||
| Hydra | ||||||||
| Elwet | ||||||||
| Faylen | ||||||||
| Quokka | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Elwet | ||||||||
| Faylen | ||||||||
| Quokka | ||||||||
| Ashen | ||||||||
| Hydra | ||||||||
| Ashen | ||||||||
| Hydra | ||||||||
| Elwet | ||||||||
| Faylen | ||||||||
| Quokka | ||||||||
| Quokka | ||||||||
| Elwet | ||||||||
| Faylen | ||||||||
| Ashen | ||||||||
| Hydra | ||||||||
| Ashen | ||||||||
| Hydra | ||||||||
| Faylen | ||||||||
| Quokka | ||||||||
| Elwet | ||||||||
| Faylen | ||||||||
| Quokka | ||||||||
| Elwet | ||||||||
| Ashen | ||||||||
| Hydra | ||||||||
8daf_cda0
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair3".
| Elwet | ||||||||
| Inktoad | ||||||||
| Quokka | ||||||||
| Faylen | ||||||||
| Phoenix | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Elwet | ||||||||
| Inktoad | ||||||||
| Phoenix | ||||||||
| Faylen | ||||||||
| Quokka | ||||||||
| Faylen | ||||||||
| Phoenix | ||||||||
| Quokka | ||||||||
| Elwet | ||||||||
| Inktoad | ||||||||
| Elwet | ||||||||
| Inktoad | ||||||||
| Faylen | ||||||||
| Phoenix | ||||||||
| Quokka | ||||||||
| Phoenix | ||||||||
| Quokka | ||||||||
| Faylen | ||||||||
| Elwet | ||||||||
| Inktoad | ||||||||
e1d6_26a6
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5comb".
| Xeraph | ||||||||
| Phoenix | ||||||||
| Kraken | ||||||||
| Rynoth | ||||||||
| Elwet | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Elwet | ||||||||
| Kraken | ||||||||
| Phoenix | ||||||||
| Rynoth | ||||||||
| Xeraph | ||||||||
| Kraken | ||||||||
| Rynoth | ||||||||
| Phoenix | ||||||||
| Xeraph | ||||||||
| Elwet | ||||||||
| Kraken | ||||||||
| Rynoth | ||||||||
| Phoenix | ||||||||
| Xeraph | ||||||||
| Elwet | ||||||||
| Phoenix | ||||||||
| Rynoth | ||||||||
| Kraken | ||||||||
| Xeraph | ||||||||
| Elwet | ||||||||
| Elwet | ||||||||
| Xeraph | ||||||||
| Rynoth | ||||||||
| Kraken | ||||||||
| Phoenix | ||||||||
77ee_b855
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair3".
| Jackalope | ||||||||
| Quokka | ||||||||
| Elwet | ||||||||
| Gorret | ||||||||
| Hydra | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Hydra | ||||||||
| Elwet | ||||||||
| Gorret | ||||||||
| Jackalope | ||||||||
| Quokka | ||||||||
| Gorret | ||||||||
| Hydra | ||||||||
| Elwet | ||||||||
| Jackalope | ||||||||
| Quokka | ||||||||
| Elwet | ||||||||
| Hydra | ||||||||
| Gorret | ||||||||
| Jackalope | ||||||||
| Quokka | ||||||||
| Elwet | ||||||||
| Gorret | ||||||||
| Hydra | ||||||||
| Jackalope | ||||||||
| Quokka | ||||||||
| Elwet | ||||||||
| Gorret | ||||||||
| Hydra | ||||||||
| Jackalope | ||||||||
| Quokka | ||||||||
4253_2ba4
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair2".
| Kraken | ||||||||
| Yawclor | ||||||||
| Hydra | ||||||||
| Phoenix | ||||||||
| Bellen | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Kraken | ||||||||
| Yawclor | ||||||||
| Bellen | ||||||||
| Hydra | ||||||||
| Phoenix | ||||||||
| Kraken | ||||||||
| Yawclor | ||||||||
| Bellen | ||||||||
| Hydra | ||||||||
| Phoenix | ||||||||
| Bellen | ||||||||
| Hydra | ||||||||
| Phoenix | ||||||||
| Kraken | ||||||||
| Yawclor | ||||||||
| Kraken | ||||||||
| Yawclor | ||||||||
| Hydra | ||||||||
| Phoenix | ||||||||
| Bellen | ||||||||
19f8_5166
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair1".
| Kraken | ||||||||
| Sphinx | ||||||||
| Thorret | ||||||||
| Chimera | ||||||||
| Manticore | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Chimera | ||||||||
| Manticore | ||||||||
| Sphinx | ||||||||
| Thorret | ||||||||
| Kraken | ||||||||
| Chimera | ||||||||
| Manticore | ||||||||
| Kraken | ||||||||
| Sphinx | ||||||||
| Thorret | ||||||||
| Sphinx | ||||||||
| Kraken | ||||||||
| Thorret | ||||||||
| Chimera | ||||||||
| Manticore | ||||||||
| Kraken | ||||||||
| Thorret | ||||||||
| Sphinx | ||||||||
| Chimera | ||||||||
| Manticore | ||||||||
9a36_67b6
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair3".
| Quokka | ||||||||
| Wyvern | ||||||||
| Manticore | ||||||||
| Ashen | ||||||||
| Yawclor | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Ashen | ||||||||
| Yawclor | ||||||||
| Quokka | ||||||||
| Wyvern | ||||||||
| Manticore | ||||||||
| Manticore | ||||||||
| Wyvern | ||||||||
| Quokka | ||||||||
| Ashen | ||||||||
| Yawclor | ||||||||
| Manticore | ||||||||
| Quokka | ||||||||
| Wyvern | ||||||||
| Ashen | ||||||||
| Yawclor | ||||||||
| Quokka | ||||||||
| Wyvern | ||||||||
| Manticore | ||||||||
| Ashen | ||||||||
| Yawclor | ||||||||
| Ashen | ||||||||
| Yawclor | ||||||||
| Manticore | ||||||||
| Quokka | ||||||||
| Wyvern | ||||||||
b08a_3f0f
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair1".
| Bellen | ||||||||
| Rynoth | ||||||||
| Inktoad | ||||||||
| Oclora | ||||||||
| Vyrax | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Bellen | ||||||||
| Inktoad | ||||||||
| Rynoth | ||||||||
| Oclora | ||||||||
| Vyrax | ||||||||
| Rynoth | ||||||||
| Bellen | ||||||||
| Inktoad | ||||||||
| Oclora | ||||||||
| Vyrax | ||||||||
| Oclora | ||||||||
| Vyrax | ||||||||
| Bellen | ||||||||
| Inktoad | ||||||||
| Rynoth | ||||||||
| Inktoad | ||||||||
| Rynoth | ||||||||
| Bellen | ||||||||
| Oclora | ||||||||
| Vyrax | ||||||||
| Oclora | ||||||||
| Vyrax | ||||||||
| Inktoad | ||||||||
| Bellen | ||||||||
| Rynoth | ||||||||
49c3_d9f9
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair3".
| Quokka | ||||||||
| Elwet | ||||||||
| Oclora | ||||||||
| Rynoth | ||||||||
| Xeraph | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Elwet | ||||||||
| Oclora | ||||||||
| Quokka | ||||||||
| Rynoth | ||||||||
| Xeraph | ||||||||
| Elwet | ||||||||
| Oclora | ||||||||
| Quokka | ||||||||
| Rynoth | ||||||||
| Xeraph | ||||||||
| Rynoth | ||||||||
| Xeraph | ||||||||
| Quokka | ||||||||
| Elwet | ||||||||
| Oclora | ||||||||
| Rynoth | ||||||||
| Xeraph | ||||||||
| Elwet | ||||||||
| Oclora | ||||||||
| Quokka | ||||||||
| Elwet | ||||||||
| Quokka | ||||||||
| Oclora | ||||||||
| Rynoth | ||||||||
| Xeraph | ||||||||
e157_8a44
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5comb".
| Dibblet | ||||||||
| Thorret | ||||||||
| Ashen | ||||||||
| Chimera | ||||||||
| Phoenix | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Dibblet | ||||||||
| Ashen | ||||||||
| Thorret | ||||||||
| Chimera | ||||||||
| Phoenix | ||||||||
| Thorret | ||||||||
| Ashen | ||||||||
| Chimera | ||||||||
| Dibblet | ||||||||
| Phoenix | ||||||||
| Dibblet | ||||||||
| Chimera | ||||||||
| Thorret | ||||||||
| Ashen | ||||||||
| Phoenix | ||||||||
| Dibblet | ||||||||
| Chimera | ||||||||
| Ashen | ||||||||
| Thorret | ||||||||
| Phoenix | ||||||||
| Ashen | ||||||||
| Chimera | ||||||||
| Thorret | ||||||||
| Dibblet | ||||||||
| Phoenix | ||||||||
a4a2_6267
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5comb".
| Elwet | ||||||||
| Bellen | ||||||||
| Wyvern | ||||||||
| Dibblet | ||||||||
| Unicorn | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Dibblet | ||||||||
| Wyvern | ||||||||
| Bellen | ||||||||
| Elwet | ||||||||
| Unicorn | ||||||||
| Unicorn | ||||||||
| Bellen | ||||||||
| Elwet | ||||||||
| Wyvern | ||||||||
| Dibblet | ||||||||
| Unicorn | ||||||||
| Wyvern | ||||||||
| Bellen | ||||||||
| Elwet | ||||||||
| Dibblet | ||||||||
| Bellen | ||||||||
| Wyvern | ||||||||
| Elwet | ||||||||
| Dibblet | ||||||||
| Unicorn | ||||||||
| Bellen | ||||||||
| Wyvern | ||||||||
| Dibblet | ||||||||
| Elwet | ||||||||
| Unicorn | ||||||||
d013_3a56
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5comb".
| Narloc | ||||||||
| Chimera | ||||||||
| Zypher | ||||||||
| Wyvern | ||||||||
| Unicorn | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Unicorn | ||||||||
| Narloc | ||||||||
| Wyvern | ||||||||
| Chimera | ||||||||
| Zypher | ||||||||
| Wyvern | ||||||||
| Zypher | ||||||||
| Chimera | ||||||||
| Narloc | ||||||||
| Unicorn | ||||||||
| Unicorn | ||||||||
| Narloc | ||||||||
| Chimera | ||||||||
| Wyvern | ||||||||
| Zypher | ||||||||
| Narloc | ||||||||
| Wyvern | ||||||||
| Chimera | ||||||||
| Zypher | ||||||||
| Unicorn | ||||||||
| Unicorn | ||||||||
| Chimera | ||||||||
| Wyvern | ||||||||
| Zypher | ||||||||
| Narloc | ||||||||
0caa_d4dd
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair2".
| Elwet | ||||||||
| Sphinx | ||||||||
| Bellen | ||||||||
| Oclora | ||||||||
| Hydra | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Bellen | ||||||||
| Oclora | ||||||||
| Hydra | ||||||||
| Elwet | ||||||||
| Sphinx | ||||||||
| Hydra | ||||||||
| Bellen | ||||||||
| Oclora | ||||||||
| Elwet | ||||||||
| Sphinx | ||||||||
| Hydra | ||||||||
| Bellen | ||||||||
| Oclora | ||||||||
| Elwet | ||||||||
| Sphinx | ||||||||
| Elwet | ||||||||
| Sphinx | ||||||||
| Bellen | ||||||||
| Oclora | ||||||||
| Hydra | ||||||||
| Hydra | ||||||||
| Oclora | ||||||||
| Bellen | ||||||||
| Elwet | ||||||||
| Sphinx | ||||||||
9e69_9c19
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair3".
| Inktoad | ||||||||
| Kraken | ||||||||
| Bellen | ||||||||
| Chimera | ||||||||
| Lystra | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Lystra | ||||||||
| Bellen | ||||||||
| Chimera | ||||||||
| Inktoad | ||||||||
| Kraken | ||||||||
| Bellen | ||||||||
| Chimera | ||||||||
| Lystra | ||||||||
| Inktoad | ||||||||
| Kraken | ||||||||
| Inktoad | ||||||||
| Kraken | ||||||||
| Chimera | ||||||||
| Lystra | ||||||||
| Bellen | ||||||||
| Bellen | ||||||||
| Chimera | ||||||||
| Lystra | ||||||||
| Inktoad | ||||||||
| Kraken | ||||||||
| Inktoad | ||||||||
| Kraken | ||||||||
| Bellen | ||||||||
| Chimera | ||||||||
| Lystra | ||||||||
106c_35c8
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair1".
| Faylen | ||||||||
| Sphinx | ||||||||
| Rynoth | ||||||||
| Narloc | ||||||||
| Unicorn | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Faylen | ||||||||
| Sphinx | ||||||||
| Unicorn | ||||||||
| Narloc | ||||||||
| Rynoth | ||||||||
| Rynoth | ||||||||
| Narloc | ||||||||
| Unicorn | ||||||||
| Faylen | ||||||||
| Sphinx | ||||||||
| Narloc | ||||||||
| Rynoth | ||||||||
| Unicorn | ||||||||
| Faylen | ||||||||
| Sphinx | ||||||||
| Unicorn | ||||||||
| Narloc | ||||||||
| Rynoth | ||||||||
| Faylen | ||||||||
| Sphinx | ||||||||
| Narloc | ||||||||
| Rynoth | ||||||||
| Unicorn | ||||||||
| Faylen | ||||||||
| Sphinx | ||||||||
9571_9576
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5giraffe".
| Inktoad | ||||||||
| Hydra | ||||||||
| Sphinx | ||||||||
| Oclora | ||||||||
| Yawclor | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Hydra | ||||||||
| Sphinx | ||||||||
| Oclora | ||||||||
| Yawclor | ||||||||
| Inktoad | ||||||||
| Inktoad | ||||||||
| Oclora | ||||||||
| Yawclor | ||||||||
| Hydra | ||||||||
| Sphinx | ||||||||
615e_ab87
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair1".
| Quokka | ||||||||
| Wyvern | ||||||||
| Gorret | ||||||||
| Manticore | ||||||||
| Vyrax | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Wyvern | ||||||||
| Gorret | ||||||||
| Quokka | ||||||||
| Manticore | ||||||||
| Vyrax | ||||||||
| Manticore | ||||||||
| Vyrax | ||||||||
| Gorret | ||||||||
| Quokka | ||||||||
| Wyvern | ||||||||
| Manticore | ||||||||
| Vyrax | ||||||||
| Gorret | ||||||||
| Wyvern | ||||||||
| Quokka | ||||||||
| Manticore | ||||||||
| Vyrax | ||||||||
| Wyvern | ||||||||
| Gorret | ||||||||
| Quokka | ||||||||
669f_eac1
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair2".
| Ashen | ||||||||
| Quokka | ||||||||
| Faylen | ||||||||
| Oclora | ||||||||
| Chimera | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Chimera | ||||||||
| Faylen | ||||||||
| Oclora | ||||||||
| Ashen | ||||||||
| Quokka | ||||||||
| Chimera | ||||||||
| Faylen | ||||||||
| Oclora | ||||||||
| Ashen | ||||||||
| Quokka | ||||||||
| Faylen | ||||||||
| Oclora | ||||||||
| Chimera | ||||||||
| Ashen | ||||||||
| Quokka | ||||||||
| Ashen | ||||||||
| Quokka | ||||||||
| Chimera | ||||||||
| Faylen | ||||||||
| Oclora | ||||||||
| Oclora | ||||||||
| Chimera | ||||||||
| Faylen | ||||||||
| Ashen | ||||||||
| Quokka | ||||||||
534b_145b
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair1".
| Jackalope | ||||||||
| Zypher | ||||||||
| Elwet | ||||||||
| Sphinx | ||||||||
| Unicorn | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Jackalope | ||||||||
| Zypher | ||||||||
| Elwet | ||||||||
| Unicorn | ||||||||
| Sphinx | ||||||||
| Jackalope | ||||||||
| Zypher | ||||||||
| Sphinx | ||||||||
| Unicorn | ||||||||
| Elwet | ||||||||
| Elwet | ||||||||
| Sphinx | ||||||||
| Unicorn | ||||||||
| Jackalope | ||||||||
| Zypher | ||||||||
| Jackalope | ||||||||
| Zypher | ||||||||
| Sphinx | ||||||||
| Elwet | ||||||||
| Unicorn | ||||||||
caa6_5d46
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5comb".
| Thorret | ||||||||
| Bellen | ||||||||
| Oclora | ||||||||
| Dibblet | ||||||||
| Ashen | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Ashen | ||||||||
| Thorret | ||||||||
| Dibblet | ||||||||
| Oclora | ||||||||
| Bellen | ||||||||
| Ashen | ||||||||
| Bellen | ||||||||
| Oclora | ||||||||
| Dibblet | ||||||||
| Thorret | ||||||||
| Ashen | ||||||||
| Bellen | ||||||||
| Dibblet | ||||||||
| Oclora | ||||||||
| Thorret | ||||||||
| Ashen | ||||||||
| Thorret | ||||||||
| Oclora | ||||||||
| Bellen | ||||||||
| Dibblet | ||||||||
| Dibblet | ||||||||
| Bellen | ||||||||
| Oclora | ||||||||
| Thorret | ||||||||
| Ashen | ||||||||
096f_f41e
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5giraffe".
| Jackalope | ||||||||
| Inktoad | ||||||||
| Manticore | ||||||||
| Hydra | ||||||||
| Sphinx | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Inktoad | ||||||||
| Manticore | ||||||||
| Hydra | ||||||||
| Sphinx | ||||||||
| Jackalope | ||||||||
| Hydra | ||||||||
| Sphinx | ||||||||
| Inktoad | ||||||||
| Manticore | ||||||||
| Jackalope | ||||||||
| Manticore | ||||||||
| Hydra | ||||||||
| Sphinx | ||||||||
| Inktoad | ||||||||
| Jackalope | ||||||||
| Hydra | ||||||||
| Sphinx | ||||||||
| Inktoad | ||||||||
| Manticore | ||||||||
| Jackalope | ||||||||
eaaa_483e
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair1".
| Jackalope | ||||||||
| Oclora | ||||||||
| Bellen | ||||||||
| Narloc | ||||||||
| Wyvern | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Bellen | ||||||||
| Wyvern | ||||||||
| Narloc | ||||||||
| Jackalope | ||||||||
| Oclora | ||||||||
| Narloc | ||||||||
| Bellen | ||||||||
| Wyvern | ||||||||
| Jackalope | ||||||||
| Oclora | ||||||||
| Narloc | ||||||||
| Wyvern | ||||||||
| Bellen | ||||||||
| Jackalope | ||||||||
| Oclora | ||||||||
| Bellen | ||||||||
| Narloc | ||||||||
| Wyvern | ||||||||
| Jackalope | ||||||||
| Oclora | ||||||||
| Bellen | ||||||||
| Narloc | ||||||||
| Wyvern | ||||||||
| Jackalope | ||||||||
| Oclora | ||||||||
6b0f_f230
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair1".
| Lystra | ||||||||
| Zypher | ||||||||
| Quokka | ||||||||
| Xeraph | ||||||||
| Elwet | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Lystra | ||||||||
| Zypher | ||||||||
| Xeraph | ||||||||
| Elwet | ||||||||
| Quokka | ||||||||
| Elwet | ||||||||
| Xeraph | ||||||||
| Quokka | ||||||||
| Lystra | ||||||||
| Zypher | ||||||||
| Lystra | ||||||||
| Zypher | ||||||||
| Quokka | ||||||||
| Elwet | ||||||||
| Xeraph | ||||||||
| Xeraph | ||||||||
| Elwet | ||||||||
| Quokka | ||||||||
| Lystra | ||||||||
| Zypher | ||||||||
| Lystra | ||||||||
| Zypher | ||||||||
| Elwet | ||||||||
| Quokka | ||||||||
| Xeraph | ||||||||
e894_a0ad
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair3".
| Chimera | ||||||||
| Rynoth | ||||||||
| Phoenix | ||||||||
| Quokka | ||||||||
| Gorret | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Phoenix | ||||||||
| Quokka | ||||||||
| Gorret | ||||||||
| Chimera | ||||||||
| Rynoth | ||||||||
| Gorret | ||||||||
| Phoenix | ||||||||
| Quokka | ||||||||
| Chimera | ||||||||
| Rynoth | ||||||||
| Quokka | ||||||||
| Gorret | ||||||||
| Phoenix | ||||||||
| Chimera | ||||||||
| Rynoth | ||||||||
| Chimera | ||||||||
| Rynoth | ||||||||
| Phoenix | ||||||||
| Quokka | ||||||||
| Gorret | ||||||||
a9b3_3d77
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair2".
| Phoenix | ||||||||
| Yawclor | ||||||||
| Quokka | ||||||||
| Dibblet | ||||||||
| Zypher | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Phoenix | ||||||||
| Quokka | ||||||||
| Yawclor | ||||||||
| Dibblet | ||||||||
| Zypher | ||||||||
| Phoenix | ||||||||
| Yawclor | ||||||||
| Quokka | ||||||||
| Dibblet | ||||||||
| Zypher | ||||||||
| Dibblet | ||||||||
| Zypher | ||||||||
| Phoenix | ||||||||
| Yawclor | ||||||||
| Quokka | ||||||||
| Dibblet | ||||||||
| Zypher | ||||||||
| Quokka | ||||||||
| Phoenix | ||||||||
| Yawclor | ||||||||
5baa_74b6
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5comb".
| Ashen | ||||||||
| Kraken | ||||||||
| Quokka | ||||||||
| Phoenix | ||||||||
| Vyrax | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Kraken | ||||||||
| Quokka | ||||||||
| Ashen | ||||||||
| Phoenix | ||||||||
| Vyrax | ||||||||
| Ashen | ||||||||
| Phoenix | ||||||||
| Quokka | ||||||||
| Kraken | ||||||||
| Vyrax | ||||||||
| Kraken | ||||||||
| Phoenix | ||||||||
| Quokka | ||||||||
| Ashen | ||||||||
| Vyrax | ||||||||
| Vyrax | ||||||||
| Ashen | ||||||||
| Phoenix | ||||||||
| Kraken | ||||||||
| Quokka | ||||||||
3723_9c87
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair2".
| Gorret | ||||||||
| Narloc | ||||||||
| Yawclor | ||||||||
| Ashen | ||||||||
| Thorret | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Ashen | ||||||||
| Thorret | ||||||||
| Gorret | ||||||||
| Narloc | ||||||||
| Yawclor | ||||||||
| Narloc | ||||||||
| Yawclor | ||||||||
| Gorret | ||||||||
| Ashen | ||||||||
| Thorret | ||||||||
| Ashen | ||||||||
| Thorret | ||||||||
| Yawclor | ||||||||
| Gorret | ||||||||
| Narloc | ||||||||
3fd7_d5e1
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair2".
| Kraken | ||||||||
| Faylen | ||||||||
| Manticore | ||||||||
| Narloc | ||||||||
| Rynoth | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Narloc | ||||||||
| Rynoth | ||||||||
| Kraken | ||||||||
| Faylen | ||||||||
| Manticore | ||||||||
| Faylen | ||||||||
| Manticore | ||||||||
| Kraken | ||||||||
| Narloc | ||||||||
| Rynoth | ||||||||
| Narloc | ||||||||
| Rynoth | ||||||||
| Kraken | ||||||||
| Faylen | ||||||||
| Manticore | ||||||||
| Kraken | ||||||||
| Faylen | ||||||||
| Manticore | ||||||||
| Narloc | ||||||||
| Rynoth | ||||||||
040d_af01
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5comb".
| Yawclor | ||||||||
| Faylen | ||||||||
| Rynoth | ||||||||
| Hydra | ||||||||
| Chimera | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Hydra | ||||||||
| Rynoth | ||||||||
| Yawclor | ||||||||
| Faylen | ||||||||
| Chimera | ||||||||
| Chimera | ||||||||
| Rynoth | ||||||||
| Faylen | ||||||||
| Yawclor | ||||||||
| Hydra | ||||||||
| Hydra | ||||||||
| Faylen | ||||||||
| Rynoth | ||||||||
| Yawclor | ||||||||
| Chimera | ||||||||
| Rynoth | ||||||||
| Yawclor | ||||||||
| Faylen | ||||||||
| Hydra | ||||||||
| Chimera | ||||||||
7337_aa70
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair1".
| Oclora | ||||||||
| Quokka | ||||||||
| Inktoad | ||||||||
| Manticore | ||||||||
| Yawclor | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Inktoad | ||||||||
| Yawclor | ||||||||
| Manticore | ||||||||
| Oclora | ||||||||
| Quokka | ||||||||
| Oclora | ||||||||
| Quokka | ||||||||
| Yawclor | ||||||||
| Inktoad | ||||||||
| Manticore | ||||||||
| Inktoad | ||||||||
| Manticore | ||||||||
| Yawclor | ||||||||
| Oclora | ||||||||
| Quokka | ||||||||
| Oclora | ||||||||
| Quokka | ||||||||
| Manticore | ||||||||
| Inktoad | ||||||||
| Yawclor | ||||||||
7594_46ed
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair2".
| Chimera | ||||||||
| Phoenix | ||||||||
| Vyrax | ||||||||
| Elwet | ||||||||
| Faylen | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Elwet | ||||||||
| Faylen | ||||||||
| Vyrax | ||||||||
| Chimera | ||||||||
| Phoenix | ||||||||
| Chimera | ||||||||
| Phoenix | ||||||||
| Vyrax | ||||||||
| Elwet | ||||||||
| Faylen | ||||||||
| Chimera | ||||||||
| Phoenix | ||||||||
| Faylen | ||||||||
| Vyrax | ||||||||
| Elwet | ||||||||
| Elwet | ||||||||
| Vyrax | ||||||||
| Faylen | ||||||||
| Chimera | ||||||||
| Phoenix | ||||||||
1062_37ed
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair2".
| Chimera | ||||||||
| Phoenix | ||||||||
| Inktoad | ||||||||
| Ashen | ||||||||
| Bellen | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Inktoad | ||||||||
| Chimera | ||||||||
| Phoenix | ||||||||
| Ashen | ||||||||
| Bellen | ||||||||
| Chimera | ||||||||
| Inktoad | ||||||||
| Phoenix | ||||||||
| Ashen | ||||||||
| Bellen | ||||||||
| Ashen | ||||||||
| Bellen | ||||||||
| Chimera | ||||||||
| Phoenix | ||||||||
| Inktoad | ||||||||
| Chimera | ||||||||
| Phoenix | ||||||||
| Inktoad | ||||||||
| Ashen | ||||||||
| Bellen | ||||||||
3f89_7fcf
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair2".
| Unicorn | ||||||||
| Hydra | ||||||||
| Yawclor | ||||||||
| Elwet | ||||||||
| Thorret | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Hydra | ||||||||
| Yawclor | ||||||||
| Unicorn | ||||||||
| Elwet | ||||||||
| Thorret | ||||||||
| Unicorn | ||||||||
| Hydra | ||||||||
| Yawclor | ||||||||
| Elwet | ||||||||
| Thorret | ||||||||
| Hydra | ||||||||
| Unicorn | ||||||||
| Yawclor | ||||||||
| Elwet | ||||||||
| Thorret | ||||||||
| Hydra | ||||||||
| Yawclor | ||||||||
| Unicorn | ||||||||
| Elwet | ||||||||
| Thorret | ||||||||
| Yawclor | ||||||||
| Hydra | ||||||||
| Unicorn | ||||||||
| Elwet | ||||||||
| Thorret | ||||||||
f358_dc7e
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5giraffe".
| Chimera | ||||||||
| Hydra | ||||||||
| Jackalope | ||||||||
| Manticore | ||||||||
| Unicorn | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Chimera | ||||||||
| Manticore | ||||||||
| Unicorn | ||||||||
| Hydra | ||||||||
| Jackalope | ||||||||
| Chimera | ||||||||
| Hydra | ||||||||
| Manticore | ||||||||
| Unicorn | ||||||||
| Jackalope | ||||||||
| Chimera | ||||||||
| Jackalope | ||||||||
| Manticore | ||||||||
| Unicorn | ||||||||
| Hydra | ||||||||
| Chimera | ||||||||
| Manticore | ||||||||
| Unicorn | ||||||||
| Hydra | ||||||||
| Jackalope | ||||||||
e5c8_28b6
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5comb".
| Sphinx | ||||||||
| Bellen | ||||||||
| Inktoad | ||||||||
| Zypher | ||||||||
| Yawclor | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Yawclor | ||||||||
| Bellen | ||||||||
| Inktoad | ||||||||
| Sphinx | ||||||||
| Zypher | ||||||||
| Yawclor | ||||||||
| Zypher | ||||||||
| Sphinx | ||||||||
| Bellen | ||||||||
| Inktoad | ||||||||
| Yawclor | ||||||||
| Zypher | ||||||||
| Inktoad | ||||||||
| Bellen | ||||||||
| Sphinx | ||||||||
| Zypher | ||||||||
| Bellen | ||||||||
| Inktoad | ||||||||
| Sphinx | ||||||||
| Yawclor | ||||||||
f5dc_56da
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair3".
| Quokka | ||||||||
| Manticore | ||||||||
| Phoenix | ||||||||
| Kraken | ||||||||
| Yawclor | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Phoenix | ||||||||
| Quokka | ||||||||
| Manticore | ||||||||
| Kraken | ||||||||
| Yawclor | ||||||||
| Quokka | ||||||||
| Manticore | ||||||||
| Phoenix | ||||||||
| Kraken | ||||||||
| Yawclor | ||||||||
| Phoenix | ||||||||
| Manticore | ||||||||
| Quokka | ||||||||
| Kraken | ||||||||
| Yawclor | ||||||||
| Kraken | ||||||||
| Yawclor | ||||||||
| Phoenix | ||||||||
| Manticore | ||||||||
| Quokka | ||||||||
| Kraken | ||||||||
| Yawclor | ||||||||
| Manticore | ||||||||
| Phoenix | ||||||||
| Quokka | ||||||||
3c04_2096
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "5giraffe".
| Quokka | ||||||||
| Xeraph | ||||||||
| Bellen | ||||||||
| Rynoth | ||||||||
| Manticore | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Quokka | ||||||||
| Xeraph | ||||||||
| Bellen | ||||||||
| Rynoth | ||||||||
| Manticore | ||||||||
| Manticore | ||||||||
| Quokka | ||||||||
| Xeraph | ||||||||
| Bellen | ||||||||
| Rynoth | ||||||||
| Manticore | ||||||||
| Quokka | ||||||||
| Xeraph | ||||||||
| Bellen | ||||||||
| Rynoth | ||||||||
| Manticore | ||||||||
| Quokka | ||||||||
| Bellen | ||||||||
| Rynoth | ||||||||
| Xeraph | ||||||||
be63_04f9
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair1".
| Wyvern | ||||||||
| Narloc | ||||||||
| Quokka | ||||||||
| Inktoad | ||||||||
| Phoenix | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Inktoad | ||||||||
| Phoenix | ||||||||
| Narloc | ||||||||
| Wyvern | ||||||||
| Quokka | ||||||||
| Inktoad | ||||||||
| Phoenix | ||||||||
| Quokka | ||||||||
| Wyvern | ||||||||
| Narloc | ||||||||
| Inktoad | ||||||||
| Phoenix | ||||||||
| Wyvern | ||||||||
| Narloc | ||||||||
| Quokka | ||||||||
| Quokka | ||||||||
| Wyvern | ||||||||
| Narloc | ||||||||
| Inktoad | ||||||||
| Phoenix | ||||||||
9fff_0c43
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair2".
| Ashen | ||||||||
| Dibblet | ||||||||
| Manticore | ||||||||
| Bellen | ||||||||
| Faylen | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Manticore | ||||||||
| Ashen | ||||||||
| Dibblet | ||||||||
| Bellen | ||||||||
| Faylen | ||||||||
| Bellen | ||||||||
| Faylen | ||||||||
| Dibblet | ||||||||
| Ashen | ||||||||
| Manticore | ||||||||
| Bellen | ||||||||
| Faylen | ||||||||
| Ashen | ||||||||
| Dibblet | ||||||||
| Manticore | ||||||||
| Dibblet | ||||||||
| Manticore | ||||||||
| Ashen | ||||||||
| Bellen | ||||||||
| Faylen | ||||||||
6686_5694
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair2".
| Ashen | ||||||||
| Sphinx | ||||||||
| Kraken | ||||||||
| Lystra | ||||||||
| Oclora | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Lystra | ||||||||
| Oclora | ||||||||
| Kraken | ||||||||
| Ashen | ||||||||
| Sphinx | ||||||||
| Lystra | ||||||||
| Oclora | ||||||||
| Ashen | ||||||||
| Sphinx | ||||||||
| Kraken | ||||||||
| Kraken | ||||||||
| Ashen | ||||||||
| Sphinx | ||||||||
| Lystra | ||||||||
| Oclora | ||||||||
| Lystra | ||||||||
| Oclora | ||||||||
| Kraken | ||||||||
| Ashen | ||||||||
| Sphinx | ||||||||
| Ashen | ||||||||
| Sphinx | ||||||||
| Kraken | ||||||||
| Lystra | ||||||||
| Oclora | ||||||||
f7e7_6171
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair1".
| Chimera | ||||||||
| Lystra | ||||||||
| Sphinx | ||||||||
| Ashen | ||||||||
| Xeraph | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Chimera | ||||||||
| Sphinx | ||||||||
| Lystra | ||||||||
| Ashen | ||||||||
| Xeraph | ||||||||
| Ashen | ||||||||
| Xeraph | ||||||||
| Sphinx | ||||||||
| Chimera | ||||||||
| Lystra | ||||||||
| Ashen | ||||||||
| Xeraph | ||||||||
| Lystra | ||||||||
| Sphinx | ||||||||
| Chimera | ||||||||
| Lystra | ||||||||
| Chimera | ||||||||
| Sphinx | ||||||||
| Ashen | ||||||||
| Xeraph | ||||||||
183f_876a
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair3".
| Lystra | ||||||||
| Zypher | ||||||||
| Ashen | ||||||||
| Dibblet | ||||||||
| Manticore | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Lystra | ||||||||
| Zypher | ||||||||
| Manticore | ||||||||
| Ashen | ||||||||
| Dibblet | ||||||||
| Ashen | ||||||||
| Manticore | ||||||||
| Dibblet | ||||||||
| Lystra | ||||||||
| Zypher | ||||||||
| Lystra | ||||||||
| Zypher | ||||||||
| Dibblet | ||||||||
| Ashen | ||||||||
| Manticore | ||||||||
| Ashen | ||||||||
| Dibblet | ||||||||
| Manticore | ||||||||
| Lystra | ||||||||
| Zypher | ||||||||
| Ashen | ||||||||
| Dibblet | ||||||||
| Manticore | ||||||||
| Lystra | ||||||||
| Zypher | ||||||||
071c_e08a
Phylogenetic trees are fundamental tools in genetics research, enabling scientists to visualize evolutionary relationships among species, gene sequences, or populations. By tracing shared ancestry, these trees can provide valuable insights into genetic biodiversity. Applications of phylogenetic trees include tracking disease evolution, identifying conserved genetic sequences, and understanding speciation processes. Phylogenetic trees are indispensable for both theoretical and applied genetics.
The tree diagram below is a phylogenetic tree with 5 leaves. This phylogenetic tree is affectionately called: "3comb+pair3".
| Faylen | ||||||||
| Xeraph | ||||||||
| Narloc | ||||||||
| Jackalope | ||||||||
| Lystra | ||||||||
Several phylogenetic trees are shown below, but only one has the SAME structure and represents the same relationships as the phylogenetic tree above.
Your task is to identify the single same phylogenetic tree that shares the same structure and relationships as the reference tree above.
Which one of the following phylogenetic trees represents the SAME tree relationships or is equivalent to the phylogenetic tree above?
Hint: trees are equivalent if internal nodes can be rotated to match. Ignore the exact left/right placement of taxa.
| Jackalope | ||||||||
| Lystra | ||||||||
| Faylen | ||||||||
| Narloc | ||||||||
| Xeraph | ||||||||
| Jackalope | ||||||||
| Lystra | ||||||||
| Faylen | ||||||||
| Narloc | ||||||||
| Xeraph | ||||||||
| Faylen | ||||||||
| Narloc | ||||||||
| Xeraph | ||||||||
| Jackalope | ||||||||
| Lystra | ||||||||
| Narloc | ||||||||
| Faylen | ||||||||
| Xeraph | ||||||||
| Jackalope | ||||||||
| Lystra | ||||||||
| Jackalope | ||||||||
| Lystra | ||||||||
| Faylen | ||||||||
| Xeraph | ||||||||
| Narloc | ||||||||