MC
ba05_4a51
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 | ||||||||
Quokka | ||||||||
Elwet | ||||||||
Gorret | ||||||||
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?
A.Elwet | ||||||||
Gorret | ||||||||
Inktoad | ||||||||
Phoenix | ||||||||
Quokka | ||||||||
Gorret | ||||||||
Elwet | ||||||||
Inktoad | ||||||||
Phoenix | ||||||||
Quokka | ||||||||
Phoenix | ||||||||
Quokka | ||||||||
Inktoad | ||||||||
Elwet | ||||||||
Gorret | ||||||||
Phoenix | ||||||||
Quokka | ||||||||
Elwet | ||||||||
Gorret | ||||||||
Inktoad | ||||||||
Elwet | ||||||||
Gorret | ||||||||
Inktoad | ||||||||
Phoenix | ||||||||
Quokka | ||||||||
5ee0_24f7
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 | ||||||||
Manticore | ||||||||
Jackalope | ||||||||
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?
A.Bellen | ||||||||
Manticore | ||||||||
Narloc | ||||||||
Jackalope | ||||||||
Unicorn | ||||||||
Bellen | ||||||||
Manticore | ||||||||
Jackalope | ||||||||
Narloc | ||||||||
Unicorn | ||||||||
Jackalope | ||||||||
Unicorn | ||||||||
Narloc | ||||||||
Bellen | ||||||||
Manticore | ||||||||
Bellen | ||||||||
Manticore | ||||||||
Jackalope | ||||||||
Narloc | ||||||||
Unicorn | ||||||||
Unicorn | ||||||||
Jackalope | ||||||||
Narloc | ||||||||
Bellen | ||||||||
Manticore | ||||||||
e2d9_dfae
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 | ||||||||
Oclora | ||||||||
Sphinx | ||||||||
Quokka | ||||||||
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?
A.Xeraph | ||||||||
Oclora | ||||||||
Sphinx | ||||||||
Elwet | ||||||||
Quokka | ||||||||
Elwet | ||||||||
Oclora | ||||||||
Sphinx | ||||||||
Quokka | ||||||||
Xeraph | ||||||||
Quokka | ||||||||
Oclora | ||||||||
Elwet | ||||||||
Sphinx | ||||||||
Xeraph | ||||||||
Xeraph | ||||||||
Oclora | ||||||||
Sphinx | ||||||||
Elwet | ||||||||
Quokka | ||||||||
Elwet | ||||||||
Sphinx | ||||||||
Oclora | ||||||||
Quokka | ||||||||
Xeraph | ||||||||
0573_9b04
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 | ||||||||
Vyrax | ||||||||
Xeraph | ||||||||
Faylen | ||||||||
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?
A.Ashen | ||||||||
Dibblet | ||||||||
Xeraph | ||||||||
Faylen | ||||||||
Vyrax | ||||||||
Dibblet | ||||||||
Vyrax | ||||||||
Xeraph | ||||||||
Faylen | ||||||||
Ashen | ||||||||
Ashen | ||||||||
Dibblet | ||||||||
Faylen | ||||||||
Vyrax | ||||||||
Xeraph | ||||||||
Ashen | ||||||||
Faylen | ||||||||
Dibblet | ||||||||
Vyrax | ||||||||
Xeraph | ||||||||
Ashen | ||||||||
Faylen | ||||||||
Dibblet | ||||||||
Xeraph | ||||||||
Vyrax | ||||||||
e922_bef0
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 | ||||||||
Quokka | ||||||||
Hydra | ||||||||
Xeraph | ||||||||
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?
A.Phoenix | ||||||||
Quokka | ||||||||
Hydra | ||||||||
Xeraph | ||||||||
Zypher | ||||||||
Zypher | ||||||||
Hydra | ||||||||
Xeraph | ||||||||
Phoenix | ||||||||
Quokka | ||||||||
Phoenix | ||||||||
Quokka | ||||||||
Hydra | ||||||||
Xeraph | ||||||||
Zypher | ||||||||
Phoenix | ||||||||
Quokka | ||||||||
Hydra | ||||||||
Xeraph | ||||||||
Zypher | ||||||||
Hydra | ||||||||
Zypher | ||||||||
Xeraph | ||||||||
Phoenix | ||||||||
Quokka | ||||||||
885d_ef75
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 | ||||||||
Xeraph | ||||||||
Unicorn | ||||||||
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?
A.Unicorn | ||||||||
Phoenix | ||||||||
Xeraph | ||||||||
Gorret | ||||||||
Sphinx | ||||||||
Unicorn | ||||||||
Xeraph | ||||||||
Phoenix | ||||||||
Gorret | ||||||||
Sphinx | ||||||||
Gorret | ||||||||
Sphinx | ||||||||
Xeraph | ||||||||
Phoenix | ||||||||
Unicorn | ||||||||
Gorret | ||||||||
Sphinx | ||||||||
Unicorn | ||||||||
Xeraph | ||||||||
Phoenix | ||||||||
Phoenix | ||||||||
Xeraph | ||||||||
Unicorn | ||||||||
Gorret | ||||||||
Sphinx | ||||||||
5d42_41a0
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 | ||||||||
Elwet | ||||||||
Thorret | ||||||||
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?
A.Elwet | ||||||||
Thorret | ||||||||
Dibblet | ||||||||
Inktoad | ||||||||
Phoenix | ||||||||
Inktoad | ||||||||
Phoenix | ||||||||
Dibblet | ||||||||
Elwet | ||||||||
Thorret | ||||||||
Inktoad | ||||||||
Phoenix | ||||||||
Thorret | ||||||||
Dibblet | ||||||||
Elwet | ||||||||
Inktoad | ||||||||
Phoenix | ||||||||
Dibblet | ||||||||
Thorret | ||||||||
Elwet | ||||||||
Thorret | ||||||||
Dibblet | ||||||||
Elwet | ||||||||
Inktoad | ||||||||
Phoenix | ||||||||
e18e_8e04
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 | ||||||||
Thorret | ||||||||
Inktoad | ||||||||
Jackalope | ||||||||
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?
A.Inktoad | ||||||||
Jackalope | ||||||||
Gorret | ||||||||
Thorret | ||||||||
Yawclor | ||||||||
Gorret | ||||||||
Jackalope | ||||||||
Inktoad | ||||||||
Thorret | ||||||||
Yawclor | ||||||||
Inktoad | ||||||||
Gorret | ||||||||
Thorret | ||||||||
Jackalope | ||||||||
Yawclor | ||||||||
Gorret | ||||||||
Thorret | ||||||||
Inktoad | ||||||||
Jackalope | ||||||||
Yawclor | ||||||||
Yawclor | ||||||||
Gorret | ||||||||
Thorret | ||||||||
Jackalope | ||||||||
Inktoad | ||||||||
8fe4_b9d0
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".
Unicorn | ||||||||
Zypher | ||||||||
Xeraph | ||||||||
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?
A.Manticore | ||||||||
Vyrax | ||||||||
Unicorn | ||||||||
Zypher | ||||||||
Xeraph | ||||||||
Unicorn | ||||||||
Zypher | ||||||||
Xeraph | ||||||||
Manticore | ||||||||
Vyrax | ||||||||
Zypher | ||||||||
Unicorn | ||||||||
Xeraph | ||||||||
Manticore | ||||||||
Vyrax | ||||||||
Unicorn | ||||||||
Xeraph | ||||||||
Zypher | ||||||||
Manticore | ||||||||
Vyrax | ||||||||
Xeraph | ||||||||
Zypher | ||||||||
Unicorn | ||||||||
Manticore | ||||||||
Vyrax | ||||||||
5262_57e7
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 | ||||||||
Faylen | ||||||||
Xeraph | ||||||||
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?
A.Xeraph | ||||||||
Yawclor | ||||||||
Kraken | ||||||||
Chimera | ||||||||
Faylen | ||||||||
Kraken | ||||||||
Yawclor | ||||||||
Xeraph | ||||||||
Chimera | ||||||||
Faylen | ||||||||
Kraken | ||||||||
Yawclor | ||||||||
Xeraph | ||||||||
Chimera | ||||||||
Faylen | ||||||||
Chimera | ||||||||
Faylen | ||||||||
Yawclor | ||||||||
Kraken | ||||||||
Xeraph | ||||||||
Xeraph | ||||||||
Yawclor | ||||||||
Kraken | ||||||||
Chimera | ||||||||
Faylen | ||||||||
b952_0937
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 | ||||||||
Jackalope | ||||||||
Phoenix | ||||||||
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?
A.Jackalope | ||||||||
Kraken | ||||||||
Elwet | ||||||||
Phoenix | ||||||||
Chimera | ||||||||
Kraken | ||||||||
Jackalope | ||||||||
Phoenix | ||||||||
Elwet | ||||||||
Chimera | ||||||||
Kraken | ||||||||
Jackalope | ||||||||
Elwet | ||||||||
Phoenix | ||||||||
Chimera | ||||||||
Jackalope | ||||||||
Phoenix | ||||||||
Elwet | ||||||||
Kraken | ||||||||
Chimera | ||||||||
Kraken | ||||||||
Elwet | ||||||||
Jackalope | ||||||||
Phoenix | ||||||||
Chimera | ||||||||
27e4_58f6
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 | ||||||||
Vyrax | ||||||||
Phoenix | ||||||||
Sphinx | ||||||||
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?
A.Chimera | ||||||||
Phoenix | ||||||||
Quokka | ||||||||
Vyrax | ||||||||
Sphinx | ||||||||
Chimera | ||||||||
Sphinx | ||||||||
Quokka | ||||||||
Vyrax | ||||||||
Phoenix | ||||||||
Phoenix | ||||||||
Sphinx | ||||||||
Quokka | ||||||||
Vyrax | ||||||||
Chimera | ||||||||
Chimera | ||||||||
Phoenix | ||||||||
Vyrax | ||||||||
Sphinx | ||||||||
Quokka | ||||||||
Phoenix | ||||||||
Sphinx | ||||||||
Quokka | ||||||||
Vyrax | ||||||||
Chimera | ||||||||
cd60_d38f
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 | ||||||||
Wyvern | ||||||||
Lystra | ||||||||
Rynoth | ||||||||
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?
A.Rynoth | ||||||||
Yawclor | ||||||||
Phoenix | ||||||||
Wyvern | ||||||||
Lystra | ||||||||
Lystra | ||||||||
Wyvern | ||||||||
Phoenix | ||||||||
Rynoth | ||||||||
Yawclor | ||||||||
Rynoth | ||||||||
Yawclor | ||||||||
Lystra | ||||||||
Phoenix | ||||||||
Wyvern | ||||||||
Lystra | ||||||||
Phoenix | ||||||||
Wyvern | ||||||||
Rynoth | ||||||||
Yawclor | ||||||||
Rynoth | ||||||||
Yawclor | ||||||||
Lystra | ||||||||
Phoenix | ||||||||
Wyvern | ||||||||
34b1_0a81
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".
Faylen | ||||||||
Hydra | ||||||||
Ashen | ||||||||
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?
A.Ashen | ||||||||
Inktoad | ||||||||
Manticore | ||||||||
Faylen | ||||||||
Hydra | ||||||||
Faylen | ||||||||
Hydra | ||||||||
Inktoad | ||||||||
Ashen | ||||||||
Manticore | ||||||||
Faylen | ||||||||
Hydra | ||||||||
Manticore | ||||||||
Ashen | ||||||||
Inktoad | ||||||||
Ashen | ||||||||
Inktoad | ||||||||
Manticore | ||||||||
Faylen | ||||||||
Hydra | ||||||||
Ashen | ||||||||
Inktoad | ||||||||
Manticore | ||||||||
Faylen | ||||||||
Hydra | ||||||||
9073_312a
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 | ||||||||
Hydra | ||||||||
Sphinx | ||||||||
Rynoth | ||||||||
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?
A.Rynoth | ||||||||
Zypher | ||||||||
Lystra | ||||||||
Hydra | ||||||||
Sphinx | ||||||||
Hydra | ||||||||
Lystra | ||||||||
Sphinx | ||||||||
Rynoth | ||||||||
Zypher | ||||||||
Rynoth | ||||||||
Zypher | ||||||||
Hydra | ||||||||
Lystra | ||||||||
Sphinx | ||||||||
Hydra | ||||||||
Sphinx | ||||||||
Lystra | ||||||||
Rynoth | ||||||||
Zypher | ||||||||
Hydra | ||||||||
Lystra | ||||||||
Sphinx | ||||||||
Rynoth | ||||||||
Zypher | ||||||||
cdf5_2952
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 | ||||||||
Faylen | ||||||||
Phoenix | ||||||||
Sphinx | ||||||||
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?
A.Faylen | ||||||||
Phoenix | ||||||||
Sphinx | ||||||||
Wyvern | ||||||||
Inktoad | ||||||||
Inktoad | ||||||||
Faylen | ||||||||
Phoenix | ||||||||
Sphinx | ||||||||
Wyvern | ||||||||
Sphinx | ||||||||
Wyvern | ||||||||
Faylen | ||||||||
Phoenix | ||||||||
Inktoad | ||||||||
Sphinx | ||||||||
Wyvern | ||||||||
Faylen | ||||||||
Phoenix | ||||||||
Inktoad | ||||||||
Sphinx | ||||||||
Phoenix | ||||||||
Wyvern | ||||||||
Faylen | ||||||||
Inktoad | ||||||||
4e44_feac
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 | ||||||||
Xeraph | ||||||||
Ashen | ||||||||
Narloc | ||||||||
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?
A.Ashen | ||||||||
Narloc | ||||||||
Bellen | ||||||||
Unicorn | ||||||||
Xeraph | ||||||||
Unicorn | ||||||||
Xeraph | ||||||||
Ashen | ||||||||
Bellen | ||||||||
Narloc | ||||||||
Unicorn | ||||||||
Xeraph | ||||||||
Bellen | ||||||||
Ashen | ||||||||
Narloc | ||||||||
Ashen | ||||||||
Narloc | ||||||||
Bellen | ||||||||
Unicorn | ||||||||
Xeraph | ||||||||
Unicorn | ||||||||
Xeraph | ||||||||
Ashen | ||||||||
Bellen | ||||||||
Narloc | ||||||||
fbab_6ecf
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 | ||||||||
Lystra | ||||||||
Unicorn | ||||||||
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?
A.Lystra | ||||||||
Unicorn | ||||||||
Kraken | ||||||||
Narloc | ||||||||
Vyrax | ||||||||
Vyrax | ||||||||
Unicorn | ||||||||
Kraken | ||||||||
Narloc | ||||||||
Lystra | ||||||||
Kraken | ||||||||
Unicorn | ||||||||
Lystra | ||||||||
Narloc | ||||||||
Vyrax | ||||||||
Lystra | ||||||||
Unicorn | ||||||||
Kraken | ||||||||
Narloc | ||||||||
Vyrax | ||||||||
Kraken | ||||||||
Narloc | ||||||||
Lystra | ||||||||
Unicorn | ||||||||
Vyrax | ||||||||
b9c0_56cc
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 | ||||||||
Sphinx | ||||||||
Chimera | ||||||||
Gorret | ||||||||
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?
A.Unicorn | ||||||||
Sphinx | ||||||||
Bellen | ||||||||
Gorret | ||||||||
Chimera | ||||||||
Bellen | ||||||||
Sphinx | ||||||||
Chimera | ||||||||
Gorret | ||||||||
Unicorn | ||||||||
Chimera | ||||||||
Gorret | ||||||||
Sphinx | ||||||||
Bellen | ||||||||
Unicorn | ||||||||
Unicorn | ||||||||
Chimera | ||||||||
Gorret | ||||||||
Bellen | ||||||||
Sphinx | ||||||||
Unicorn | ||||||||
Bellen | ||||||||
Chimera | ||||||||
Gorret | ||||||||
Sphinx | ||||||||
a942_0269
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 | ||||||||
Xeraph | ||||||||
Quokka | ||||||||
Vyrax | ||||||||
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?
A.Faylen | ||||||||
Xeraph | ||||||||
Phoenix | ||||||||
Vyrax | ||||||||
Quokka | ||||||||
Faylen | ||||||||
Xeraph | ||||||||
Vyrax | ||||||||
Phoenix | ||||||||
Quokka | ||||||||
Quokka | ||||||||
Phoenix | ||||||||
Vyrax | ||||||||
Faylen | ||||||||
Xeraph | ||||||||
Faylen | ||||||||
Xeraph | ||||||||
Phoenix | ||||||||
Quokka | ||||||||
Vyrax | ||||||||
Faylen | ||||||||
Xeraph | ||||||||
Phoenix | ||||||||
Quokka | ||||||||
Vyrax | ||||||||
2e7d_edd3
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".
Wyvern | ||||||||
Ashen | ||||||||
Oclora | ||||||||
Inktoad | ||||||||
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?
A.Wyvern | ||||||||
Ashen | ||||||||
Oclora | ||||||||
Inktoad | ||||||||
Unicorn | ||||||||
Ashen | ||||||||
Oclora | ||||||||
Wyvern | ||||||||
Inktoad | ||||||||
Unicorn | ||||||||
Wyvern | ||||||||
Ashen | ||||||||
Oclora | ||||||||
Inktoad | ||||||||
Unicorn | ||||||||
Ashen | ||||||||
Wyvern | ||||||||
Oclora | ||||||||
Inktoad | ||||||||
Unicorn | ||||||||
Ashen | ||||||||
Oclora | ||||||||
Wyvern | ||||||||
Inktoad | ||||||||
Unicorn | ||||||||
2d1b_1e25
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 | ||||||||
Vyrax | ||||||||
Lystra | ||||||||
Phoenix | ||||||||
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?
A.Sphinx | ||||||||
Vyrax | ||||||||
Hydra | ||||||||
Lystra | ||||||||
Phoenix | ||||||||
Sphinx | ||||||||
Vyrax | ||||||||
Hydra | ||||||||
Phoenix | ||||||||
Lystra | ||||||||
Hydra | ||||||||
Lystra | ||||||||
Phoenix | ||||||||
Sphinx | ||||||||
Vyrax | ||||||||
Lystra | ||||||||
Phoenix | ||||||||
Hydra | ||||||||
Sphinx | ||||||||
Vyrax | ||||||||
Hydra | ||||||||
Phoenix | ||||||||
Lystra | ||||||||
Sphinx | ||||||||
Vyrax | ||||||||
4bdf_8172
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 | ||||||||
Hydra | ||||||||
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?
A.Dibblet | ||||||||
Hydra | ||||||||
Manticore | ||||||||
Gorret | ||||||||
Narloc | ||||||||
Hydra | ||||||||
Dibblet | ||||||||
Manticore | ||||||||
Gorret | ||||||||
Narloc | ||||||||
Gorret | ||||||||
Narloc | ||||||||
Hydra | ||||||||
Dibblet | ||||||||
Manticore | ||||||||
Manticore | ||||||||
Dibblet | ||||||||
Hydra | ||||||||
Gorret | ||||||||
Narloc | ||||||||
Dibblet | ||||||||
Manticore | ||||||||
Hydra | ||||||||
Gorret | ||||||||
Narloc | ||||||||
ec23_3034
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 | ||||||||
Quokka | ||||||||
Xeraph | ||||||||
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?
A.Dibblet | ||||||||
Quokka | ||||||||
Faylen | ||||||||
Elwet | ||||||||
Xeraph | ||||||||
Quokka | ||||||||
Xeraph | ||||||||
Elwet | ||||||||
Faylen | ||||||||
Dibblet | ||||||||
Xeraph | ||||||||
Elwet | ||||||||
Faylen | ||||||||
Quokka | ||||||||
Dibblet | ||||||||
Faylen | ||||||||
Xeraph | ||||||||
Elwet | ||||||||
Quokka | ||||||||
Dibblet | ||||||||
Elwet | ||||||||
Faylen | ||||||||
Xeraph | ||||||||
Quokka | ||||||||
Dibblet | ||||||||
bed3_8f5b
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 | ||||||||
Thorret | ||||||||
Jackalope | ||||||||
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?
A.Xeraph | ||||||||
Thorret | ||||||||
Lystra | ||||||||
Phoenix | ||||||||
Jackalope | ||||||||
Jackalope | ||||||||
Lystra | ||||||||
Phoenix | ||||||||
Thorret | ||||||||
Xeraph | ||||||||
Thorret | ||||||||
Lystra | ||||||||
Jackalope | ||||||||
Phoenix | ||||||||
Xeraph | ||||||||
Xeraph | ||||||||
Lystra | ||||||||
Phoenix | ||||||||
Jackalope | ||||||||
Thorret | ||||||||
Jackalope | ||||||||
Phoenix | ||||||||
Lystra | ||||||||
Thorret | ||||||||
Xeraph | ||||||||
e33a_5e20
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".
Wyvern | ||||||||
Kraken | ||||||||
Quokka | ||||||||
Vyrax | ||||||||
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?
A.Kraken | ||||||||
Quokka | ||||||||
Vyrax | ||||||||
Zypher | ||||||||
Wyvern | ||||||||
Vyrax | ||||||||
Quokka | ||||||||
Zypher | ||||||||
Kraken | ||||||||
Wyvern | ||||||||
Kraken | ||||||||
Quokka | ||||||||
Vyrax | ||||||||
Zypher | ||||||||
Wyvern | ||||||||
Kraken | ||||||||
Vyrax | ||||||||
Zypher | ||||||||
Quokka | ||||||||
Wyvern | ||||||||
Wyvern | ||||||||
Quokka | ||||||||
Vyrax | ||||||||
Zypher | ||||||||
Kraken | ||||||||
8c15_262d
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 | ||||||||
Narloc | ||||||||
Sphinx | ||||||||
Yawclor | ||||||||
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?
A.Yawclor | ||||||||
Zypher | ||||||||
Lystra | ||||||||
Narloc | ||||||||
Sphinx | ||||||||
Yawclor | ||||||||
Zypher | ||||||||
Narloc | ||||||||
Sphinx | ||||||||
Lystra | ||||||||
Narloc | ||||||||
Lystra | ||||||||
Sphinx | ||||||||
Yawclor | ||||||||
Zypher | ||||||||
Narloc | ||||||||
Lystra | ||||||||
Sphinx | ||||||||
Yawclor | ||||||||
Zypher | ||||||||
Yawclor | ||||||||
Zypher | ||||||||
Lystra | ||||||||
Narloc | ||||||||
Sphinx | ||||||||
8895_8603
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 | ||||||||
Oclora | ||||||||
Kraken | ||||||||
Phoenix | ||||||||
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?
A.Gorret | ||||||||
Oclora | ||||||||
Phoenix | ||||||||
Kraken | ||||||||
Xeraph | ||||||||
Phoenix | ||||||||
Xeraph | ||||||||
Kraken | ||||||||
Gorret | ||||||||
Oclora | ||||||||
Gorret | ||||||||
Oclora | ||||||||
Xeraph | ||||||||
Kraken | ||||||||
Phoenix | ||||||||
Kraken | ||||||||
Phoenix | ||||||||
Xeraph | ||||||||
Gorret | ||||||||
Oclora | ||||||||
Gorret | ||||||||
Oclora | ||||||||
Xeraph | ||||||||
Kraken | ||||||||
Phoenix | ||||||||
4d2f_4177
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 | ||||||||
Narloc | ||||||||
Hydra | ||||||||
Xeraph | ||||||||
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?
A.Xeraph | ||||||||
Hydra | ||||||||
Jackalope | ||||||||
Faylen | ||||||||
Narloc | ||||||||
Jackalope | ||||||||
Hydra | ||||||||
Xeraph | ||||||||
Faylen | ||||||||
Narloc | ||||||||
Jackalope | ||||||||
Xeraph | ||||||||
Hydra | ||||||||
Faylen | ||||||||
Narloc | ||||||||
Jackalope | ||||||||
Xeraph | ||||||||
Hydra | ||||||||
Faylen | ||||||||
Narloc | ||||||||
Hydra | ||||||||
Xeraph | ||||||||
Jackalope | ||||||||
Faylen | ||||||||
Narloc | ||||||||
ebd6_ff78
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".
Wyvern | ||||||||
Hydra | ||||||||
Kraken | ||||||||
Quokka | ||||||||
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?
A.Wyvern | ||||||||
Hydra | ||||||||
Kraken | ||||||||
Quokka | ||||||||
Unicorn | ||||||||
Quokka | ||||||||
Unicorn | ||||||||
Hydra | ||||||||
Kraken | ||||||||
Wyvern | ||||||||
Quokka | ||||||||
Unicorn | ||||||||
Wyvern | ||||||||
Hydra | ||||||||
Kraken | ||||||||
Quokka | ||||||||
Unicorn | ||||||||
Hydra | ||||||||
Wyvern | ||||||||
Kraken | ||||||||
Quokka | ||||||||
Unicorn | ||||||||
Wyvern | ||||||||
Hydra | ||||||||
Kraken | ||||||||
35ae_78b8
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 | ||||||||
Ashen | ||||||||
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?
A.Ashen | ||||||||
Xeraph | ||||||||
Lystra | ||||||||
Phoenix | ||||||||
Vyrax | ||||||||
Vyrax | ||||||||
Lystra | ||||||||
Phoenix | ||||||||
Ashen | ||||||||
Xeraph | ||||||||
Ashen | ||||||||
Xeraph | ||||||||
Phoenix | ||||||||
Lystra | ||||||||
Vyrax | ||||||||
Lystra | ||||||||
Ashen | ||||||||
Xeraph | ||||||||
Phoenix | ||||||||
Vyrax | ||||||||
Vyrax | ||||||||
Lystra | ||||||||
Xeraph | ||||||||
Phoenix | ||||||||
Ashen | ||||||||
f93b_a870
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 | ||||||||
Wyvern | ||||||||
Dibblet | ||||||||
Gorret | ||||||||
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?
A.Ashen | ||||||||
Gorret | ||||||||
Dibblet | ||||||||
Hydra | ||||||||
Wyvern | ||||||||
Hydra | ||||||||
Wyvern | ||||||||
Dibblet | ||||||||
Gorret | ||||||||
Ashen | ||||||||
Hydra | ||||||||
Wyvern | ||||||||
Dibblet | ||||||||
Gorret | ||||||||
Ashen | ||||||||
Ashen | ||||||||
Dibblet | ||||||||
Gorret | ||||||||
Hydra | ||||||||
Wyvern | ||||||||
Ashen | ||||||||
Dibblet | ||||||||
Gorret | ||||||||
Hydra | ||||||||
Wyvern | ||||||||
c420_32ed
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 | ||||||||
Faylen | ||||||||
Vyrax | ||||||||
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?
A.Quokka | ||||||||
Vyrax | ||||||||
Oclora | ||||||||
Chimera | ||||||||
Faylen | ||||||||
Chimera | ||||||||
Faylen | ||||||||
Oclora | ||||||||
Quokka | ||||||||
Vyrax | ||||||||
Oclora | ||||||||
Vyrax | ||||||||
Quokka | ||||||||
Chimera | ||||||||
Faylen | ||||||||
Quokka | ||||||||
Vyrax | ||||||||
Oclora | ||||||||
Chimera | ||||||||
Faylen | ||||||||
Chimera | ||||||||
Faylen | ||||||||
Oclora | ||||||||
Quokka | ||||||||
Vyrax | ||||||||
3ac7_9e0b
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 | ||||||||
Ashen | ||||||||
Thorret | ||||||||
Dibblet | ||||||||
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?
A.Dibblet | ||||||||
Oclora | ||||||||
Elwet | ||||||||
Thorret | ||||||||
Ashen | ||||||||
Ashen | ||||||||
Thorret | ||||||||
Elwet | ||||||||
Dibblet | ||||||||
Oclora | ||||||||
Dibblet | ||||||||
Oclora | ||||||||
Elwet | ||||||||
Ashen | ||||||||
Thorret | ||||||||
Dibblet | ||||||||
Oclora | ||||||||
Thorret | ||||||||
Ashen | ||||||||
Elwet | ||||||||
Dibblet | ||||||||
Oclora | ||||||||
Elwet | ||||||||
Thorret | ||||||||
Ashen | ||||||||
19df_46cc
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".
Thorret | ||||||||
Unicorn | ||||||||
Faylen | ||||||||
Inktoad | ||||||||
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?
A.Thorret | ||||||||
Unicorn | ||||||||
Kraken | ||||||||
Faylen | ||||||||
Inktoad | ||||||||
Thorret | ||||||||
Unicorn | ||||||||
Inktoad | ||||||||
Faylen | ||||||||
Kraken | ||||||||
Inktoad | ||||||||
Kraken | ||||||||
Faylen | ||||||||
Thorret | ||||||||
Unicorn | ||||||||
Inktoad | ||||||||
Kraken | ||||||||
Faylen | ||||||||
Thorret | ||||||||
Unicorn | ||||||||
Faylen | ||||||||
Inktoad | ||||||||
Kraken | ||||||||
Thorret | ||||||||
Unicorn | ||||||||
0900_aaf2
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 | ||||||||
Quokka | ||||||||
Narloc | ||||||||
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?
A.Gorret | ||||||||
Lystra | ||||||||
Narloc | ||||||||
Inktoad | ||||||||
Quokka | ||||||||
Lystra | ||||||||
Narloc | ||||||||
Gorret | ||||||||
Inktoad | ||||||||
Quokka | ||||||||
Narloc | ||||||||
Gorret | ||||||||
Lystra | ||||||||
Inktoad | ||||||||
Quokka | ||||||||
Inktoad | ||||||||
Quokka | ||||||||
Gorret | ||||||||
Lystra | ||||||||
Narloc | ||||||||
Lystra | ||||||||
Gorret | ||||||||
Narloc | ||||||||
Inktoad | ||||||||
Quokka | ||||||||
7d84_0545
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 | ||||||||
Vyrax | ||||||||
Dibblet | ||||||||
Phoenix | ||||||||
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?
A.Lystra | ||||||||
Vyrax | ||||||||
Dibblet | ||||||||
Phoenix | ||||||||
Gorret | ||||||||
Lystra | ||||||||
Phoenix | ||||||||
Vyrax | ||||||||
Dibblet | ||||||||
Gorret | ||||||||
Gorret | ||||||||
Dibblet | ||||||||
Lystra | ||||||||
Vyrax | ||||||||
Phoenix | ||||||||
Gorret | ||||||||
Lystra | ||||||||
Vyrax | ||||||||
Dibblet | ||||||||
Phoenix | ||||||||
Dibblet | ||||||||
Phoenix | ||||||||
Lystra | ||||||||
Vyrax | ||||||||
Gorret | ||||||||
d631_17d5
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 | ||||||||
Phoenix | ||||||||
Inktoad | ||||||||
Xeraph | ||||||||
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?
A.Faylen | ||||||||
Inktoad | ||||||||
Xeraph | ||||||||
Dibblet | ||||||||
Phoenix | ||||||||
Faylen | ||||||||
Inktoad | ||||||||
Xeraph | ||||||||
Dibblet | ||||||||
Phoenix | ||||||||
Faylen | ||||||||
Inktoad | ||||||||
Xeraph | ||||||||
Dibblet | ||||||||
Phoenix | ||||||||
Inktoad | ||||||||
Faylen | ||||||||
Xeraph | ||||||||
Dibblet | ||||||||
Phoenix | ||||||||
Inktoad | ||||||||
Xeraph | ||||||||
Faylen | ||||||||
Dibblet | ||||||||
Phoenix | ||||||||
afcc_f986
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 | ||||||||
Kraken | ||||||||
Sphinx | ||||||||
Inktoad | ||||||||
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?
A.Sphinx | ||||||||
Inktoad | ||||||||
Oclora | ||||||||
Ashen | ||||||||
Kraken | ||||||||
Oclora | ||||||||
Inktoad | ||||||||
Sphinx | ||||||||
Ashen | ||||||||
Kraken | ||||||||
Ashen | ||||||||
Kraken | ||||||||
Oclora | ||||||||
Sphinx | ||||||||
Inktoad | ||||||||
Ashen | ||||||||
Kraken | ||||||||
Inktoad | ||||||||
Oclora | ||||||||
Sphinx | ||||||||
Inktoad | ||||||||
Oclora | ||||||||
Sphinx | ||||||||
Ashen | ||||||||
Kraken | ||||||||
57f4_ad3a
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 | ||||||||
Wyvern | ||||||||
Bellen | ||||||||
Rynoth | ||||||||
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?
A.Hydra | ||||||||
Bellen | ||||||||
Rynoth | ||||||||
Jackalope | ||||||||
Wyvern | ||||||||
Bellen | ||||||||
Hydra | ||||||||
Rynoth | ||||||||
Jackalope | ||||||||
Wyvern | ||||||||
Hydra | ||||||||
Rynoth | ||||||||
Bellen | ||||||||
Jackalope | ||||||||
Wyvern | ||||||||
Bellen | ||||||||
Rynoth | ||||||||
Hydra | ||||||||
Jackalope | ||||||||
Wyvern | ||||||||
Rynoth | ||||||||
Bellen | ||||||||
Hydra | ||||||||
Jackalope | ||||||||
Wyvern | ||||||||
7855_4de5
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 | ||||||||
Faylen | ||||||||
Bellen | ||||||||
Rynoth | ||||||||
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?
A.Rynoth | ||||||||
Unicorn | ||||||||
Bellen | ||||||||
Dibblet | ||||||||
Faylen | ||||||||
Bellen | ||||||||
Unicorn | ||||||||
Rynoth | ||||||||
Dibblet | ||||||||
Faylen | ||||||||
Rynoth | ||||||||
Unicorn | ||||||||
Bellen | ||||||||
Dibblet | ||||||||
Faylen | ||||||||
Dibblet | ||||||||
Faylen | ||||||||
Unicorn | ||||||||
Bellen | ||||||||
Rynoth | ||||||||
Bellen | ||||||||
Unicorn | ||||||||
Rynoth | ||||||||
Dibblet | ||||||||
Faylen | ||||||||
96c2_5167
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 | ||||||||
Manticore | ||||||||
Quokka | ||||||||
Chimera | ||||||||
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?
A.Yawclor | ||||||||
Xeraph | ||||||||
Manticore | ||||||||
Quokka | ||||||||
Chimera | ||||||||
Chimera | ||||||||
Manticore | ||||||||
Quokka | ||||||||
Xeraph | ||||||||
Yawclor | ||||||||
Xeraph | ||||||||
Manticore | ||||||||
Chimera | ||||||||
Quokka | ||||||||
Yawclor | ||||||||
Chimera | ||||||||
Xeraph | ||||||||
Manticore | ||||||||
Quokka | ||||||||
Yawclor | ||||||||
Yawclor | ||||||||
Manticore | ||||||||
Xeraph | ||||||||
Chimera | ||||||||
Quokka | ||||||||
bad3_cf83
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".
Narloc | ||||||||
Dibblet | ||||||||
Hydra | ||||||||
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?
A.Dibblet | ||||||||
Hydra | ||||||||
Narloc | ||||||||
Phoenix | ||||||||
Thorret | ||||||||
Phoenix | ||||||||
Thorret | ||||||||
Dibblet | ||||||||
Hydra | ||||||||
Narloc | ||||||||
Phoenix | ||||||||
Thorret | ||||||||
Dibblet | ||||||||
Hydra | ||||||||
Narloc | ||||||||
Dibblet | ||||||||
Hydra | ||||||||
Narloc | ||||||||
Phoenix | ||||||||
Thorret | ||||||||
Dibblet | ||||||||
Narloc | ||||||||
Hydra | ||||||||
Phoenix | ||||||||
Thorret | ||||||||
798e_c168
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 | ||||||||
Gorret | ||||||||
Yawclor | ||||||||
Jackalope | ||||||||
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?
A.Yawclor | ||||||||
Gorret | ||||||||
Kraken | ||||||||
Jackalope | ||||||||
Phoenix | ||||||||
Jackalope | ||||||||
Phoenix | ||||||||
Gorret | ||||||||
Yawclor | ||||||||
Kraken | ||||||||
Gorret | ||||||||
Yawclor | ||||||||
Kraken | ||||||||
Jackalope | ||||||||
Phoenix | ||||||||
Gorret | ||||||||
Yawclor | ||||||||
Kraken | ||||||||
Jackalope | ||||||||
Phoenix | ||||||||
Jackalope | ||||||||
Phoenix | ||||||||
Kraken | ||||||||
Yawclor | ||||||||
Gorret | ||||||||
9948_9e24
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 | ||||||||
Elwet | ||||||||
Jackalope | ||||||||
Oclora | ||||||||
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?
A.Faylen | ||||||||
Oclora | ||||||||
Jackalope | ||||||||
Dibblet | ||||||||
Elwet | ||||||||
Faylen | ||||||||
Jackalope | ||||||||
Oclora | ||||||||
Dibblet | ||||||||
Elwet | ||||||||
Faylen | ||||||||
Jackalope | ||||||||
Oclora | ||||||||
Dibblet | ||||||||
Elwet | ||||||||
Jackalope | ||||||||
Oclora | ||||||||
Faylen | ||||||||
Dibblet | ||||||||
Elwet | ||||||||
Faylen | ||||||||
Jackalope | ||||||||
Oclora | ||||||||
Dibblet | ||||||||
Elwet | ||||||||
1b33_ad99
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".
Bellen | ||||||||
Elwet | ||||||||
Chimera | ||||||||
Dibblet | ||||||||
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?
A.Elwet | ||||||||
Dibblet | ||||||||
Vyrax | ||||||||
Chimera | ||||||||
Bellen | ||||||||
Dibblet | ||||||||
Vyrax | ||||||||
Chimera | ||||||||
Elwet | ||||||||
Bellen | ||||||||
Bellen | ||||||||
Elwet | ||||||||
Vyrax | ||||||||
Chimera | ||||||||
Dibblet | ||||||||
Vyrax | ||||||||
Chimera | ||||||||
Dibblet | ||||||||
Elwet | ||||||||
Bellen | ||||||||
Bellen | ||||||||
Chimera | ||||||||
Vyrax | ||||||||
Dibblet | ||||||||
Elwet | ||||||||
93d7_29fc
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".
Oclora | ||||||||
Yawclor | ||||||||
Thorret | ||||||||
Dibblet | ||||||||
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?
A.Elwet | ||||||||
Thorret | ||||||||
Dibblet | ||||||||
Oclora | ||||||||
Yawclor | ||||||||
Dibblet | ||||||||
Elwet | ||||||||
Thorret | ||||||||
Oclora | ||||||||
Yawclor | ||||||||
Oclora | ||||||||
Yawclor | ||||||||
Dibblet | ||||||||
Elwet | ||||||||
Thorret | ||||||||
Oclora | ||||||||
Yawclor | ||||||||
Dibblet | ||||||||
Elwet | ||||||||
Thorret | ||||||||
Dibblet | ||||||||
Thorret | ||||||||
Elwet | ||||||||
Oclora | ||||||||
Yawclor | ||||||||
9f42_ecd1
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 | ||||||||
Faylen | ||||||||
Narloc | ||||||||
Jackalope | ||||||||
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?
A.Narloc | ||||||||
Unicorn | ||||||||
Jackalope | ||||||||
Chimera | ||||||||
Faylen | ||||||||
Chimera | ||||||||
Faylen | ||||||||
Jackalope | ||||||||
Narloc | ||||||||
Unicorn | ||||||||
Narloc | ||||||||
Jackalope | ||||||||
Unicorn | ||||||||
Chimera | ||||||||
Faylen | ||||||||
Narloc | ||||||||
Jackalope | ||||||||
Unicorn | ||||||||
Chimera | ||||||||
Faylen | ||||||||
Narloc | ||||||||
Unicorn | ||||||||
Jackalope | ||||||||
Chimera | ||||||||
Faylen | ||||||||
c050_d457
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".
Vyrax | ||||||||
Kraken | ||||||||
Unicorn | ||||||||
Phoenix | ||||||||
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?
A.Jackalope | ||||||||
Kraken | ||||||||
Phoenix | ||||||||
Unicorn | ||||||||
Vyrax | ||||||||
Vyrax | ||||||||
Jackalope | ||||||||
Kraken | ||||||||
Phoenix | ||||||||
Unicorn | ||||||||
Jackalope | ||||||||
Kraken | ||||||||
Unicorn | ||||||||
Phoenix | ||||||||
Vyrax | ||||||||
Kraken | ||||||||
Unicorn | ||||||||
Jackalope | ||||||||
Phoenix | ||||||||
Vyrax | ||||||||
Vyrax | ||||||||
Phoenix | ||||||||
Unicorn | ||||||||
Kraken | ||||||||
Jackalope | ||||||||
d94c_9fd9
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 | ||||||||
Xeraph | ||||||||
Inktoad | ||||||||
Gorret | ||||||||
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?
A.Dibblet | ||||||||
Inktoad | ||||||||
Xeraph | ||||||||
Gorret | ||||||||
Yawclor | ||||||||
Dibblet | ||||||||
Inktoad | ||||||||
Xeraph | ||||||||
Gorret | ||||||||
Yawclor | ||||||||
Gorret | ||||||||
Yawclor | ||||||||
Dibblet | ||||||||
Inktoad | ||||||||
Xeraph | ||||||||
Dibblet | ||||||||
Xeraph | ||||||||
Inktoad | ||||||||
Gorret | ||||||||
Yawclor | ||||||||
Gorret | ||||||||
Yawclor | ||||||||
Inktoad | ||||||||
Dibblet | ||||||||
Xeraph | ||||||||
578e_6158
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 | ||||||||
Phoenix | ||||||||
Inktoad | ||||||||
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?
A.Oclora | ||||||||
Phoenix | ||||||||
Jackalope | ||||||||
Inktoad | ||||||||
Yawclor | ||||||||
Oclora | ||||||||
Phoenix | ||||||||
Jackalope | ||||||||
Inktoad | ||||||||
Yawclor | ||||||||
Jackalope | ||||||||
Phoenix | ||||||||
Oclora | ||||||||
Inktoad | ||||||||
Yawclor | ||||||||
Oclora | ||||||||
Jackalope | ||||||||
Phoenix | ||||||||
Inktoad | ||||||||
Yawclor | ||||||||
Jackalope | ||||||||
Oclora | ||||||||
Phoenix | ||||||||
Inktoad | ||||||||
Yawclor | ||||||||
236e_3f25
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 | ||||||||
Oclora | ||||||||
Yawclor | ||||||||
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?
A.Elwet | ||||||||
Quokka | ||||||||
Oclora | ||||||||
Yawclor | ||||||||
Gorret | ||||||||
Gorret | ||||||||
Yawclor | ||||||||
Oclora | ||||||||
Elwet | ||||||||
Quokka | ||||||||
Yawclor | ||||||||
Gorret | ||||||||
Oclora | ||||||||
Elwet | ||||||||
Quokka | ||||||||
Gorret | ||||||||
Yawclor | ||||||||
Oclora | ||||||||
Elwet | ||||||||
Quokka | ||||||||
Elwet | ||||||||
Quokka | ||||||||
Gorret | ||||||||
Oclora | ||||||||
Yawclor | ||||||||
8406_fa0b
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 | ||||||||
Narloc | ||||||||
Wyvern | ||||||||
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?
A.Thorret | ||||||||
Narloc | ||||||||
Faylen | ||||||||
Vyrax | ||||||||
Wyvern | ||||||||
Faylen | ||||||||
Vyrax | ||||||||
Narloc | ||||||||
Wyvern | ||||||||
Thorret | ||||||||
Vyrax | ||||||||
Narloc | ||||||||
Wyvern | ||||||||
Faylen | ||||||||
Thorret | ||||||||
Thorret | ||||||||
Vyrax | ||||||||
Faylen | ||||||||
Narloc | ||||||||
Wyvern | ||||||||
Faylen | ||||||||
Vyrax | ||||||||
Narloc | ||||||||
Wyvern | ||||||||
Thorret | ||||||||
7652_6975
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 | ||||||||
Manticore | ||||||||
Yawclor | ||||||||
Gorret | ||||||||
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?
A.Gorret | ||||||||
Jackalope | ||||||||
Kraken | ||||||||
Manticore | ||||||||
Yawclor | ||||||||
Gorret | ||||||||
Jackalope | ||||||||
Kraken | ||||||||
Manticore | ||||||||
Yawclor | ||||||||
Yawclor | ||||||||
Kraken | ||||||||
Manticore | ||||||||
Gorret | ||||||||
Jackalope | ||||||||
Manticore | ||||||||
Yawclor | ||||||||
Kraken | ||||||||
Gorret | ||||||||
Jackalope | ||||||||
Manticore | ||||||||
Kraken | ||||||||
Yawclor | ||||||||
Gorret | ||||||||
Jackalope | ||||||||
1514_1f85
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 | ||||||||
Chimera | ||||||||
Elwet | ||||||||
Bellen | ||||||||
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?
A.Inktoad | ||||||||
Chimera | ||||||||
Elwet | ||||||||
Bellen | ||||||||
Sphinx | ||||||||
Sphinx | ||||||||
Chimera | ||||||||
Bellen | ||||||||
Elwet | ||||||||
Inktoad | ||||||||
Chimera | ||||||||
Elwet | ||||||||
Bellen | ||||||||
Sphinx | ||||||||
Inktoad | ||||||||
Chimera | ||||||||
Sphinx | ||||||||
Bellen | ||||||||
Elwet | ||||||||
Inktoad | ||||||||
Inktoad | ||||||||
Sphinx | ||||||||
Elwet | ||||||||
Bellen | ||||||||
Chimera | ||||||||
1f65_7346
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 | ||||||||
Chimera | ||||||||
Zypher | ||||||||
Faylen | ||||||||
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?
A.Chimera | ||||||||
Zypher | ||||||||
Manticore | ||||||||
Faylen | ||||||||
Lystra | ||||||||
Faylen | ||||||||
Lystra | ||||||||
Chimera | ||||||||
Manticore | ||||||||
Zypher | ||||||||
Chimera | ||||||||
Manticore | ||||||||
Zypher | ||||||||
Faylen | ||||||||
Lystra | ||||||||
Faylen | ||||||||
Lystra | ||||||||
Manticore | ||||||||
Chimera | ||||||||
Zypher | ||||||||
Chimera | ||||||||
Zypher | ||||||||
Manticore | ||||||||
Faylen | ||||||||
Lystra | ||||||||
10e4_6633
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 | ||||||||
Hydra | ||||||||
Dibblet | ||||||||
Narloc | ||||||||
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?
A.Gorret | ||||||||
Narloc | ||||||||
Dibblet | ||||||||
Hydra | ||||||||
Oclora | ||||||||
Gorret | ||||||||
Hydra | ||||||||
Dibblet | ||||||||
Narloc | ||||||||
Oclora | ||||||||
Hydra | ||||||||
Dibblet | ||||||||
Narloc | ||||||||
Gorret | ||||||||
Oclora | ||||||||
Gorret | ||||||||
Narloc | ||||||||
Dibblet | ||||||||
Hydra | ||||||||
Oclora | ||||||||
Dibblet | ||||||||
Gorret | ||||||||
Narloc | ||||||||
Hydra | ||||||||
Oclora | ||||||||
eba7_b6ba
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 | ||||||||
Phoenix | ||||||||
Zypher | ||||||||
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?
A.Jackalope | ||||||||
Bellen | ||||||||
Wyvern | ||||||||
Phoenix | ||||||||
Zypher | ||||||||
Bellen | ||||||||
Wyvern | ||||||||
Zypher | ||||||||
Phoenix | ||||||||
Jackalope | ||||||||
Phoenix | ||||||||
Zypher | ||||||||
Bellen | ||||||||
Wyvern | ||||||||
Jackalope | ||||||||
Jackalope | ||||||||
Bellen | ||||||||
Phoenix | ||||||||
Zypher | ||||||||
Wyvern | ||||||||
Bellen | ||||||||
Wyvern | ||||||||
Phoenix | ||||||||
Zypher | ||||||||
Jackalope | ||||||||
61ce_a8cf
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 | ||||||||
Kraken | ||||||||
Narloc | ||||||||
Zypher | ||||||||
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?
A.Gorret | ||||||||
Dibblet | ||||||||
Kraken | ||||||||
Narloc | ||||||||
Zypher | ||||||||
Gorret | ||||||||
Kraken | ||||||||
Narloc | ||||||||
Dibblet | ||||||||
Zypher | ||||||||
Narloc | ||||||||
Kraken | ||||||||
Zypher | ||||||||
Dibblet | ||||||||
Gorret | ||||||||
Gorret | ||||||||
Dibblet | ||||||||
Zypher | ||||||||
Kraken | ||||||||
Narloc | ||||||||
Gorret | ||||||||
Dibblet | ||||||||
Kraken | ||||||||
Narloc | ||||||||
Zypher | ||||||||
ec63_1274
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 | ||||||||
Hydra | ||||||||
Chimera | ||||||||
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?
A.Chimera | ||||||||
Quokka | ||||||||
Elwet | ||||||||
Hydra | ||||||||
Sphinx | ||||||||
Hydra | ||||||||
Chimera | ||||||||
Elwet | ||||||||
Quokka | ||||||||
Sphinx | ||||||||
Chimera | ||||||||
Elwet | ||||||||
Quokka | ||||||||
Hydra | ||||||||
Sphinx | ||||||||
Elwet | ||||||||
Quokka | ||||||||
Chimera | ||||||||
Hydra | ||||||||
Sphinx | ||||||||
Elwet | ||||||||
Chimera | ||||||||
Quokka | ||||||||
Hydra | ||||||||
Sphinx | ||||||||
fa07_d181
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 | ||||||||
Vyrax | ||||||||
Ashen | ||||||||
Inktoad | ||||||||
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?
A.Oclora | ||||||||
Vyrax | ||||||||
Ashen | ||||||||
Quokka | ||||||||
Inktoad | ||||||||
Oclora | ||||||||
Vyrax | ||||||||
Quokka | ||||||||
Ashen | ||||||||
Inktoad | ||||||||
Ashen | ||||||||
Inktoad | ||||||||
Quokka | ||||||||
Oclora | ||||||||
Vyrax | ||||||||
Inktoad | ||||||||
Quokka | ||||||||
Ashen | ||||||||
Oclora | ||||||||
Vyrax | ||||||||
Ashen | ||||||||
Inktoad | ||||||||
Quokka | ||||||||
Oclora | ||||||||
Vyrax | ||||||||
7ebe_5855
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 | ||||||||
Sphinx | ||||||||
Gorret | ||||||||
Thorret | ||||||||
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?
A.Chimera | ||||||||
Sphinx | ||||||||
Gorret | ||||||||
Thorret | ||||||||
Rynoth | ||||||||
Chimera | ||||||||
Sphinx | ||||||||
Thorret | ||||||||
Gorret | ||||||||
Rynoth | ||||||||
Chimera | ||||||||
Sphinx | ||||||||
Rynoth | ||||||||
Thorret | ||||||||
Gorret | ||||||||
Gorret | ||||||||
Thorret | ||||||||
Rynoth | ||||||||
Chimera | ||||||||
Sphinx | ||||||||
Rynoth | ||||||||
Thorret | ||||||||
Gorret | ||||||||
Chimera | ||||||||
Sphinx | ||||||||
1efe_1499
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 | ||||||||
Quokka | ||||||||
Chimera | ||||||||
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?
A.Hydra | ||||||||
Quokka | ||||||||
Chimera | ||||||||
Manticore | ||||||||
Yawclor | ||||||||
Hydra | ||||||||
Quokka | ||||||||
Yawclor | ||||||||
Chimera | ||||||||
Manticore | ||||||||
Hydra | ||||||||
Quokka | ||||||||
Yawclor | ||||||||
Chimera | ||||||||
Manticore | ||||||||
Manticore | ||||||||
Chimera | ||||||||
Yawclor | ||||||||
Hydra | ||||||||
Quokka | ||||||||
Hydra | ||||||||
Quokka | ||||||||
Manticore | ||||||||
Yawclor | ||||||||
Chimera | ||||||||
a981_850a
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 | ||||||||
Vyrax | ||||||||
Jackalope | ||||||||
Quokka | ||||||||
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?
A.Sphinx | ||||||||
Vyrax | ||||||||
Jackalope | ||||||||
Quokka | ||||||||
Chimera | ||||||||
Sphinx | ||||||||
Vyrax | ||||||||
Chimera | ||||||||
Jackalope | ||||||||
Quokka | ||||||||
Sphinx | ||||||||
Vyrax | ||||||||
Quokka | ||||||||
Chimera | ||||||||
Jackalope | ||||||||
Chimera | ||||||||
Quokka | ||||||||
Jackalope | ||||||||
Sphinx | ||||||||
Vyrax | ||||||||
Chimera | ||||||||
Quokka | ||||||||
Jackalope | ||||||||
Sphinx | ||||||||
Vyrax | ||||||||
00e1_face
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 | ||||||||
Jackalope | ||||||||
Wyvern | ||||||||
Yawclor | ||||||||
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?
A.Yawclor | ||||||||
Sphinx | ||||||||
Wyvern | ||||||||
Inktoad | ||||||||
Jackalope | ||||||||
Inktoad | ||||||||
Jackalope | ||||||||
Wyvern | ||||||||
Sphinx | ||||||||
Yawclor | ||||||||
Sphinx | ||||||||
Yawclor | ||||||||
Wyvern | ||||||||
Inktoad | ||||||||
Jackalope | ||||||||
Inktoad | ||||||||
Jackalope | ||||||||
Sphinx | ||||||||
Wyvern | ||||||||
Yawclor | ||||||||
Wyvern | ||||||||
Yawclor | ||||||||
Sphinx | ||||||||
Inktoad | ||||||||
Jackalope | ||||||||
5db3_cf91
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 | ||||||||
Phoenix | ||||||||
Elwet | ||||||||
Faylen | ||||||||
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?
A.Kraken | ||||||||
Phoenix | ||||||||
Elwet | ||||||||
Faylen | ||||||||
Wyvern | ||||||||
Kraken | ||||||||
Elwet | ||||||||
Phoenix | ||||||||
Faylen | ||||||||
Wyvern | ||||||||
Wyvern | ||||||||
Elwet | ||||||||
Faylen | ||||||||
Kraken | ||||||||
Phoenix | ||||||||
Wyvern | ||||||||
Elwet | ||||||||
Faylen | ||||||||
Kraken | ||||||||
Phoenix | ||||||||
Elwet | ||||||||
Faylen | ||||||||
Kraken | ||||||||
Phoenix | ||||||||
Wyvern | ||||||||
89d0_2981
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 | ||||||||
Kraken | ||||||||
Narloc | ||||||||
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?
A.Dibblet | ||||||||
Wyvern | ||||||||
Ashen | ||||||||
Kraken | ||||||||
Narloc | ||||||||
Kraken | ||||||||
Ashen | ||||||||
Narloc | ||||||||
Dibblet | ||||||||
Wyvern | ||||||||
Dibblet | ||||||||
Wyvern | ||||||||
Ashen | ||||||||
Kraken | ||||||||
Narloc | ||||||||
Ashen | ||||||||
Kraken | ||||||||
Narloc | ||||||||
Dibblet | ||||||||
Wyvern | ||||||||
Ashen | ||||||||
Narloc | ||||||||
Kraken | ||||||||
Dibblet | ||||||||
Wyvern | ||||||||
4567_fb06
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".
Yawclor | ||||||||
Oclora | ||||||||
Unicorn | ||||||||
Elwet | ||||||||
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?
A.Oclora | ||||||||
Unicorn | ||||||||
Yawclor | ||||||||
Elwet | ||||||||
Narloc | ||||||||
Elwet | ||||||||
Narloc | ||||||||
Unicorn | ||||||||
Oclora | ||||||||
Yawclor | ||||||||
Elwet | ||||||||
Narloc | ||||||||
Oclora | ||||||||
Unicorn | ||||||||
Yawclor | ||||||||
Oclora | ||||||||
Unicorn | ||||||||
Yawclor | ||||||||
Elwet | ||||||||
Narloc | ||||||||
Unicorn | ||||||||
Yawclor | ||||||||
Oclora | ||||||||
Elwet | ||||||||
Narloc | ||||||||
d89e_759e
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 | ||||||||
Dibblet | ||||||||
Sphinx | ||||||||
Bellen | ||||||||
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?
A.Sphinx | ||||||||
Bellen | ||||||||
Narloc | ||||||||
Dibblet | ||||||||
Manticore | ||||||||
Dibblet | ||||||||
Sphinx | ||||||||
Bellen | ||||||||
Narloc | ||||||||
Manticore | ||||||||
Manticore | ||||||||
Sphinx | ||||||||
Dibblet | ||||||||
Narloc | ||||||||
Bellen | ||||||||
Manticore | ||||||||
Sphinx | ||||||||
Bellen | ||||||||
Narloc | ||||||||
Dibblet | ||||||||
Manticore | ||||||||
Bellen | ||||||||
Narloc | ||||||||
Dibblet | ||||||||
Sphinx | ||||||||
9f0e_78ee
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 | ||||||||
Wyvern | ||||||||
Zypher | ||||||||
Thorret | ||||||||
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?
A.Jackalope | ||||||||
Wyvern | ||||||||
Zypher | ||||||||
Thorret | ||||||||
Xeraph | ||||||||
Thorret | ||||||||
Xeraph | ||||||||
Zypher | ||||||||
Jackalope | ||||||||
Wyvern | ||||||||
Thorret | ||||||||
Xeraph | ||||||||
Wyvern | ||||||||
Jackalope | ||||||||
Zypher | ||||||||
Thorret | ||||||||
Xeraph | ||||||||
Jackalope | ||||||||
Wyvern | ||||||||
Zypher | ||||||||
Thorret | ||||||||
Xeraph | ||||||||
Zypher | ||||||||
Jackalope | ||||||||
Wyvern | ||||||||
3247_ad9b
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 | ||||||||
Dibblet | ||||||||
Xeraph | ||||||||
Zypher | ||||||||
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?
A.Chimera | ||||||||
Dibblet | ||||||||
Xeraph | ||||||||
Zypher | ||||||||
Oclora | ||||||||
Xeraph | ||||||||
Oclora | ||||||||
Zypher | ||||||||
Chimera | ||||||||
Dibblet | ||||||||
Xeraph | ||||||||
Zypher | ||||||||
Oclora | ||||||||
Chimera | ||||||||
Dibblet | ||||||||
Chimera | ||||||||
Dibblet | ||||||||
Zypher | ||||||||
Oclora | ||||||||
Xeraph | ||||||||
Chimera | ||||||||
Dibblet | ||||||||
Xeraph | ||||||||
Oclora | ||||||||
Zypher | ||||||||
1e12_50b0
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".
Wyvern | ||||||||
Xeraph | ||||||||
Quokka | ||||||||
Rynoth | ||||||||
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?
A.Wyvern | ||||||||
Xeraph | ||||||||
Quokka | ||||||||
Yawclor | ||||||||
Rynoth | ||||||||
Wyvern | ||||||||
Xeraph | ||||||||
Yawclor | ||||||||
Quokka | ||||||||
Rynoth | ||||||||
Wyvern | ||||||||
Xeraph | ||||||||
Quokka | ||||||||
Rynoth | ||||||||
Yawclor | ||||||||
Wyvern | ||||||||
Xeraph | ||||||||
Quokka | ||||||||
Rynoth | ||||||||
Yawclor | ||||||||
Yawclor | ||||||||
Quokka | ||||||||
Rynoth | ||||||||
Wyvern | ||||||||
Xeraph | ||||||||
2c4a_f896
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 | ||||||||
Dibblet | ||||||||
Rynoth | ||||||||
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?
A.Gorret | ||||||||
Manticore | ||||||||
Rynoth | ||||||||
Yawclor | ||||||||
Dibblet | ||||||||
Manticore | ||||||||
Yawclor | ||||||||
Dibblet | ||||||||
Rynoth | ||||||||
Gorret | ||||||||
Gorret | ||||||||
Rynoth | ||||||||
Manticore | ||||||||
Yawclor | ||||||||
Dibblet | ||||||||
Gorret | ||||||||
Dibblet | ||||||||
Manticore | ||||||||
Yawclor | ||||||||
Rynoth | ||||||||
Manticore | ||||||||
Yawclor | ||||||||
Dibblet | ||||||||
Rynoth | ||||||||
Gorret | ||||||||
08c7_741c
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 | ||||||||
Elwet | ||||||||
Oclora | ||||||||
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?
A.Bellen | ||||||||
Elwet | ||||||||
Vyrax | ||||||||
Gorret | ||||||||
Oclora | ||||||||
Bellen | ||||||||
Vyrax | ||||||||
Elwet | ||||||||
Oclora | ||||||||
Gorret | ||||||||
Bellen | ||||||||
Gorret | ||||||||
Vyrax | ||||||||
Elwet | ||||||||
Oclora | ||||||||
Bellen | ||||||||
Vyrax | ||||||||
Elwet | ||||||||
Gorret | ||||||||
Oclora | ||||||||
Gorret | ||||||||
Oclora | ||||||||
Elwet | ||||||||
Vyrax | ||||||||
Bellen | ||||||||
8c6c_499d
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 | ||||||||
Bellen | ||||||||
Zypher | ||||||||
Dibblet | ||||||||
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?
A.Bellen | ||||||||
Narloc | ||||||||
Dibblet | ||||||||
Zypher | ||||||||
Quokka | ||||||||
Bellen | ||||||||
Dibblet | ||||||||
Zypher | ||||||||
Narloc | ||||||||
Quokka | ||||||||
Quokka | ||||||||
Bellen | ||||||||
Zypher | ||||||||
Dibblet | ||||||||
Narloc | ||||||||
Quokka | ||||||||
Bellen | ||||||||
Zypher | ||||||||
Dibblet | ||||||||
Narloc | ||||||||
Narloc | ||||||||
Bellen | ||||||||
Dibblet | ||||||||
Zypher | ||||||||
Quokka | ||||||||
1b4e_6a34
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".
Lystra | ||||||||
Vyrax | ||||||||
Yawclor | ||||||||
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?
A.Lystra | ||||||||
Vyrax | ||||||||
Yawclor | ||||||||
Narloc | ||||||||
Zypher | ||||||||
Lystra | ||||||||
Yawclor | ||||||||
Vyrax | ||||||||
Narloc | ||||||||
Zypher | ||||||||
Narloc | ||||||||
Zypher | ||||||||
Lystra | ||||||||
Vyrax | ||||||||
Yawclor | ||||||||
Yawclor | ||||||||
Lystra | ||||||||
Vyrax | ||||||||
Narloc | ||||||||
Zypher | ||||||||
Yawclor | ||||||||
Lystra | ||||||||
Vyrax | ||||||||
Narloc | ||||||||
Zypher | ||||||||
5ed1_d343
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 | ||||||||
Xeraph | ||||||||
Chimera | ||||||||
Phoenix | ||||||||
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?
A.Unicorn | ||||||||
Chimera | ||||||||
Xeraph | ||||||||
Phoenix | ||||||||
Jackalope | ||||||||
Unicorn | ||||||||
Chimera | ||||||||
Phoenix | ||||||||
Jackalope | ||||||||
Xeraph | ||||||||
Jackalope | ||||||||
Xeraph | ||||||||
Phoenix | ||||||||
Chimera | ||||||||
Unicorn | ||||||||
Chimera | ||||||||
Phoenix | ||||||||
Jackalope | ||||||||
Xeraph | ||||||||
Unicorn | ||||||||
Unicorn | ||||||||
Chimera | ||||||||
Jackalope | ||||||||
Xeraph | ||||||||
Phoenix | ||||||||
a7ef_17f4
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".
Unicorn | ||||||||
Vyrax | ||||||||
Yawclor | ||||||||
Kraken | ||||||||
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?
A.Vyrax | ||||||||
Yawclor | ||||||||
Unicorn | ||||||||
Kraken | ||||||||
Wyvern | ||||||||
Unicorn | ||||||||
Vyrax | ||||||||
Yawclor | ||||||||
Kraken | ||||||||
Wyvern | ||||||||
Kraken | ||||||||
Wyvern | ||||||||
Vyrax | ||||||||
Yawclor | ||||||||
Unicorn | ||||||||
Kraken | ||||||||
Wyvern | ||||||||
Vyrax | ||||||||
Unicorn | ||||||||
Yawclor | ||||||||
Kraken | ||||||||
Wyvern | ||||||||
Vyrax | ||||||||
Unicorn | ||||||||
Yawclor | ||||||||
000a_894b
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 | ||||||||
Quokka | ||||||||
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?
A.Gorret | ||||||||
Quokka | ||||||||
Wyvern | ||||||||
Yawclor | ||||||||
Phoenix | ||||||||
Gorret | ||||||||
Yawclor | ||||||||
Quokka | ||||||||
Wyvern | ||||||||
Phoenix | ||||||||
Phoenix | ||||||||
Wyvern | ||||||||
Gorret | ||||||||
Quokka | ||||||||
Yawclor | ||||||||
Gorret | ||||||||
Quokka | ||||||||
Wyvern | ||||||||
Yawclor | ||||||||
Phoenix | ||||||||
Wyvern | ||||||||
Yawclor | ||||||||
Gorret | ||||||||
Quokka | ||||||||
Phoenix | ||||||||
54ac_874d
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 | ||||||||
Jackalope | ||||||||
Manticore | ||||||||
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?
A.Hydra | ||||||||
Jackalope | ||||||||
Manticore | ||||||||
Xeraph | ||||||||
Yawclor | ||||||||
Hydra | ||||||||
Xeraph | ||||||||
Yawclor | ||||||||
Jackalope | ||||||||
Manticore | ||||||||
Hydra | ||||||||
Jackalope | ||||||||
Xeraph | ||||||||
Yawclor | ||||||||
Manticore | ||||||||
Hydra | ||||||||
Xeraph | ||||||||
Yawclor | ||||||||
Jackalope | ||||||||
Manticore | ||||||||
Hydra | ||||||||
Jackalope | ||||||||
Manticore | ||||||||
Yawclor | ||||||||
Xeraph | ||||||||
7146_66e8
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".
Vyrax | ||||||||
Gorret | ||||||||
Narloc | ||||||||
Wyvern | ||||||||
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?
A.Wyvern | ||||||||
Narloc | ||||||||
Vyrax | ||||||||
Gorret | ||||||||
Xeraph | ||||||||
Xeraph | ||||||||
Gorret | ||||||||
Narloc | ||||||||
Vyrax | ||||||||
Wyvern | ||||||||
Xeraph | ||||||||
Wyvern | ||||||||
Gorret | ||||||||
Vyrax | ||||||||
Narloc | ||||||||
Gorret | ||||||||
Wyvern | ||||||||
Narloc | ||||||||
Vyrax | ||||||||
Xeraph | ||||||||
Xeraph | ||||||||
Gorret | ||||||||
Narloc | ||||||||
Vyrax | ||||||||
Wyvern | ||||||||
5ad5_0618
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 | ||||||||
Ashen | ||||||||
Phoenix | ||||||||
Unicorn | ||||||||
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?
A.Unicorn | ||||||||
Ashen | ||||||||
Phoenix | ||||||||
Xeraph | ||||||||
Lystra | ||||||||
Xeraph | ||||||||
Ashen | ||||||||
Phoenix | ||||||||
Unicorn | ||||||||
Lystra | ||||||||
Lystra | ||||||||
Ashen | ||||||||
Xeraph | ||||||||
Phoenix | ||||||||
Unicorn | ||||||||
Ashen | ||||||||
Unicorn | ||||||||
Phoenix | ||||||||
Xeraph | ||||||||
Lystra | ||||||||
Lystra | ||||||||
Ashen | ||||||||
Phoenix | ||||||||
Unicorn | ||||||||
Xeraph | ||||||||
4e18_56a7
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 | ||||||||
Thorret | ||||||||
Kraken | ||||||||
Dibblet | ||||||||
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?
A.Dibblet | ||||||||
Gorret | ||||||||
Elwet | ||||||||
Thorret | ||||||||
Kraken | ||||||||
Dibblet | ||||||||
Gorret | ||||||||
Elwet | ||||||||
Kraken | ||||||||
Thorret | ||||||||
Kraken | ||||||||
Elwet | ||||||||
Thorret | ||||||||
Dibblet | ||||||||
Gorret | ||||||||
Kraken | ||||||||
Thorret | ||||||||
Elwet | ||||||||
Dibblet | ||||||||
Gorret | ||||||||
Dibblet | ||||||||
Gorret | ||||||||
Kraken | ||||||||
Thorret | ||||||||
Elwet | ||||||||
f0ef_b957
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 | ||||||||
Unicorn | ||||||||
Bellen | ||||||||
Ashen | ||||||||
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?
A.Ashen | ||||||||
Bellen | ||||||||
Kraken | ||||||||
Elwet | ||||||||
Unicorn | ||||||||
Elwet | ||||||||
Unicorn | ||||||||
Ashen | ||||||||
Bellen | ||||||||
Kraken | ||||||||
Elwet | ||||||||
Unicorn | ||||||||
Ashen | ||||||||
Bellen | ||||||||
Kraken | ||||||||
Elwet | ||||||||
Unicorn | ||||||||
Ashen | ||||||||
Kraken | ||||||||
Bellen | ||||||||
Ashen | ||||||||
Kraken | ||||||||
Bellen | ||||||||
Elwet | ||||||||
Unicorn | ||||||||
d2a2_996f
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 | ||||||||
Inktoad | ||||||||
Oclora | ||||||||
Rynoth | ||||||||
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?
A.Oclora | ||||||||
Rynoth | ||||||||
Hydra | ||||||||
Faylen | ||||||||
Inktoad | ||||||||
Faylen | ||||||||
Inktoad | ||||||||
Oclora | ||||||||
Hydra | ||||||||
Rynoth | ||||||||
Rynoth | ||||||||
Hydra | ||||||||
Oclora | ||||||||
Faylen | ||||||||
Inktoad | ||||||||
Hydra | ||||||||
Rynoth | ||||||||
Oclora | ||||||||
Faylen | ||||||||
Inktoad | ||||||||
Hydra | ||||||||
Oclora | ||||||||
Rynoth | ||||||||
Faylen | ||||||||
Inktoad | ||||||||
d209_c92f
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 | ||||||||
Oclora | ||||||||
Ashen | ||||||||
Dibblet | ||||||||
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?
A.Elwet | ||||||||
Oclora | ||||||||
Dibblet | ||||||||
Ashen | ||||||||
Kraken | ||||||||
Dibblet | ||||||||
Kraken | ||||||||
Ashen | ||||||||
Elwet | ||||||||
Oclora | ||||||||
Elwet | ||||||||
Oclora | ||||||||
Dibblet | ||||||||
Kraken | ||||||||
Ashen | ||||||||
Elwet | ||||||||
Oclora | ||||||||
Ashen | ||||||||
Dibblet | ||||||||
Kraken | ||||||||
Ashen | ||||||||
Dibblet | ||||||||
Kraken | ||||||||
Elwet | ||||||||
Oclora | ||||||||
5002_94c1
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 | ||||||||
Phoenix | ||||||||
Vyrax | ||||||||
Zypher | ||||||||
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?
A.Vyrax | ||||||||
Gorret | ||||||||
Phoenix | ||||||||
Zypher | ||||||||
Xeraph | ||||||||
Gorret | ||||||||
Phoenix | ||||||||
Vyrax | ||||||||
Zypher | ||||||||
Xeraph | ||||||||
Xeraph | ||||||||
Vyrax | ||||||||
Zypher | ||||||||
Gorret | ||||||||
Phoenix | ||||||||
Vyrax | ||||||||
Zypher | ||||||||
Gorret | ||||||||
Phoenix | ||||||||
Xeraph | ||||||||
Xeraph | ||||||||
Gorret | ||||||||
Phoenix | ||||||||
Zypher | ||||||||
Vyrax | ||||||||
50bc_0a81
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 | ||||||||
Rynoth | ||||||||
Lystra | ||||||||
Vyrax | ||||||||
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?
A.Dibblet | ||||||||
Lystra | ||||||||
Vyrax | ||||||||
Rynoth | ||||||||
Thorret | ||||||||
Thorret | ||||||||
Lystra | ||||||||
Vyrax | ||||||||
Dibblet | ||||||||
Rynoth | ||||||||
Thorret | ||||||||
Dibblet | ||||||||
Rynoth | ||||||||
Vyrax | ||||||||
Lystra | ||||||||
Lystra | ||||||||
Vyrax | ||||||||
Dibblet | ||||||||
Rynoth | ||||||||
Thorret | ||||||||
Thorret | ||||||||
Dibblet | ||||||||
Rynoth | ||||||||
Lystra | ||||||||
Vyrax | ||||||||
224d_957a
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 | ||||||||
Lystra | ||||||||
Zypher | ||||||||
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?
A.Elwet | ||||||||
Xeraph | ||||||||
Manticore | ||||||||
Lystra | ||||||||
Zypher | ||||||||
Lystra | ||||||||
Manticore | ||||||||
Zypher | ||||||||
Elwet | ||||||||
Xeraph | ||||||||
Zypher | ||||||||
Lystra | ||||||||
Manticore | ||||||||
Elwet | ||||||||
Xeraph | ||||||||
Manticore | ||||||||
Zypher | ||||||||
Lystra | ||||||||
Elwet | ||||||||
Xeraph | ||||||||
Lystra | ||||||||
Zypher | ||||||||
Manticore | ||||||||
Elwet | ||||||||
Xeraph | ||||||||
29cc_2bc0
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".
Vyrax | ||||||||
Zypher | ||||||||
Bellen | ||||||||
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?
A.Bellen | ||||||||
Vyrax | ||||||||
Zypher | ||||||||
Inktoad | ||||||||
Phoenix | ||||||||
Zypher | ||||||||
Bellen | ||||||||
Vyrax | ||||||||
Inktoad | ||||||||
Phoenix | ||||||||
Inktoad | ||||||||
Phoenix | ||||||||
Vyrax | ||||||||
Zypher | ||||||||
Bellen | ||||||||
Inktoad | ||||||||
Phoenix | ||||||||
Vyrax | ||||||||
Zypher | ||||||||
Bellen | ||||||||
Inktoad | ||||||||
Phoenix | ||||||||
Vyrax | ||||||||
Bellen | ||||||||
Zypher | ||||||||
4dee_b7c7
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 | ||||||||
Gorret | ||||||||
Jackalope | ||||||||
Sphinx | ||||||||
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?
A.Dibblet | ||||||||
Gorret | ||||||||
Sphinx | ||||||||
Jackalope | ||||||||
Vyrax | ||||||||
Dibblet | ||||||||
Gorret | ||||||||
Jackalope | ||||||||
Sphinx | ||||||||
Vyrax | ||||||||
Sphinx | ||||||||
Vyrax | ||||||||
Jackalope | ||||||||
Dibblet | ||||||||
Gorret | ||||||||
Jackalope | ||||||||
Sphinx | ||||||||
Vyrax | ||||||||
Dibblet | ||||||||
Gorret | ||||||||
Vyrax | ||||||||
Jackalope | ||||||||
Sphinx | ||||||||
Dibblet | ||||||||
Gorret | ||||||||
dd34_d8f6
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 | ||||||||
Quokka | ||||||||
Inktoad | ||||||||
Yawclor | ||||||||
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?
A.Dibblet | ||||||||
Quokka | ||||||||
Thorret | ||||||||
Inktoad | ||||||||
Yawclor | ||||||||
Dibblet | ||||||||
Quokka | ||||||||
Inktoad | ||||||||
Thorret | ||||||||
Yawclor | ||||||||
Thorret | ||||||||
Inktoad | ||||||||
Yawclor | ||||||||
Dibblet | ||||||||
Quokka | ||||||||
Inktoad | ||||||||
Thorret | ||||||||
Yawclor | ||||||||
Dibblet | ||||||||
Quokka | ||||||||
Dibblet | ||||||||
Quokka | ||||||||
Thorret | ||||||||
Inktoad | ||||||||
Yawclor | ||||||||
7911_0a22
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 | ||||||||
Manticore | ||||||||
Sphinx | ||||||||
Chimera | ||||||||
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?
A.Rynoth | ||||||||
Chimera | ||||||||
Sphinx | ||||||||
Unicorn | ||||||||
Manticore | ||||||||
Chimera | ||||||||
Manticore | ||||||||
Sphinx | ||||||||
Unicorn | ||||||||
Rynoth | ||||||||
Chimera | ||||||||
Manticore | ||||||||
Sphinx | ||||||||
Unicorn | ||||||||
Rynoth | ||||||||
Manticore | ||||||||
Unicorn | ||||||||
Sphinx | ||||||||
Chimera | ||||||||
Rynoth | ||||||||
Manticore | ||||||||
Sphinx | ||||||||
Chimera | ||||||||
Unicorn | ||||||||
Rynoth | ||||||||
dd90_4087
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 | ||||||||
Xeraph | ||||||||
Quokka | ||||||||
Wyvern | ||||||||
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?
A.Sphinx | ||||||||
Quokka | ||||||||
Wyvern | ||||||||
Manticore | ||||||||
Xeraph | ||||||||
Manticore | ||||||||
Xeraph | ||||||||
Wyvern | ||||||||
Quokka | ||||||||
Sphinx | ||||||||
Sphinx | ||||||||
Quokka | ||||||||
Wyvern | ||||||||
Manticore | ||||||||
Xeraph | ||||||||
Manticore | ||||||||
Xeraph | ||||||||
Quokka | ||||||||
Sphinx | ||||||||
Wyvern | ||||||||
Manticore | ||||||||
Xeraph | ||||||||
Sphinx | ||||||||
Wyvern | ||||||||
Quokka | ||||||||
806b_d432
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 | ||||||||
Quokka | ||||||||
Inktoad | ||||||||
Zypher | ||||||||
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?
A.Elwet | ||||||||
Quokka | ||||||||
Jackalope | ||||||||
Zypher | ||||||||
Inktoad | ||||||||
Inktoad | ||||||||
Zypher | ||||||||
Jackalope | ||||||||
Elwet | ||||||||
Quokka | ||||||||
Elwet | ||||||||
Quokka | ||||||||
Jackalope | ||||||||
Zypher | ||||||||
Inktoad | ||||||||
Elwet | ||||||||
Quokka | ||||||||
Inktoad | ||||||||
Jackalope | ||||||||
Zypher | ||||||||
Inktoad | ||||||||
Zypher | ||||||||
Jackalope | ||||||||
Elwet | ||||||||
Quokka | ||||||||
53e4_b900
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 | ||||||||
Dibblet | ||||||||
Thorret | ||||||||
Manticore | ||||||||
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?
A.Thorret | ||||||||
Dibblet | ||||||||
Elwet | ||||||||
Manticore | ||||||||
Jackalope | ||||||||
Jackalope | ||||||||
Elwet | ||||||||
Thorret | ||||||||
Dibblet | ||||||||
Manticore | ||||||||
Jackalope | ||||||||
Dibblet | ||||||||
Thorret | ||||||||
Elwet | ||||||||
Manticore | ||||||||
Dibblet | ||||||||
Thorret | ||||||||
Elwet | ||||||||
Manticore | ||||||||
Jackalope | ||||||||
Elwet | ||||||||
Thorret | ||||||||
Dibblet | ||||||||
Manticore | ||||||||
Jackalope | ||||||||
8980_9046
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 | ||||||||
Quokka | ||||||||
Rynoth | ||||||||
Yawclor | ||||||||
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?
A.Jackalope | ||||||||
Yawclor | ||||||||
Quokka | ||||||||
Rynoth | ||||||||
Lystra | ||||||||
Lystra | ||||||||
Rynoth | ||||||||
Yawclor | ||||||||
Jackalope | ||||||||
Quokka | ||||||||
Lystra | ||||||||
Jackalope | ||||||||
Quokka | ||||||||
Rynoth | ||||||||
Yawclor | ||||||||
Lystra | ||||||||
Jackalope | ||||||||
Quokka | ||||||||
Rynoth | ||||||||
Yawclor | ||||||||
Lystra | ||||||||
Jackalope | ||||||||
Rynoth | ||||||||
Quokka | ||||||||
Yawclor | ||||||||
9e6a_5d80
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 | ||||||||
Chimera | ||||||||
Zypher | ||||||||
Wyvern | ||||||||
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?
A.Thorret | ||||||||
Faylen | ||||||||
Wyvern | ||||||||
Zypher | ||||||||
Chimera | ||||||||
Thorret | ||||||||
Zypher | ||||||||
Chimera | ||||||||
Wyvern | ||||||||
Faylen | ||||||||
Thorret | ||||||||
Faylen | ||||||||
Wyvern | ||||||||
Chimera | ||||||||
Zypher | ||||||||
Chimera | ||||||||
Faylen | ||||||||
Wyvern | ||||||||
Zypher | ||||||||
Thorret | ||||||||
Chimera | ||||||||
Zypher | ||||||||
Faylen | ||||||||
Wyvern | ||||||||
Thorret | ||||||||
8c1c_7ae1
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".
Bellen | ||||||||
Faylen | ||||||||
Dibblet | ||||||||
Yawclor | ||||||||
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?
A.Bellen | ||||||||
Faylen | ||||||||
Thorret | ||||||||
Yawclor | ||||||||
Dibblet | ||||||||
Dibblet | ||||||||
Yawclor | ||||||||
Thorret | ||||||||
Bellen | ||||||||
Faylen | ||||||||
Thorret | ||||||||
Dibblet | ||||||||
Yawclor | ||||||||
Bellen | ||||||||
Faylen | ||||||||
Thorret | ||||||||
Yawclor | ||||||||
Dibblet | ||||||||
Bellen | ||||||||
Faylen | ||||||||
Bellen | ||||||||
Faylen | ||||||||
Dibblet | ||||||||
Thorret | ||||||||
Yawclor | ||||||||