MAT
8aa5_ef43
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Pyruvate Oxidation For each molecule of glucose, this stage produces zero (0) ATP and two (2) NADH molecules Cirtic Acid Cycle (TCA cycle) Begins with the transfer of a two-carbon acetyl CoA to a four-carbon oxaloacetate to form a six-carbon citrate Chemiosmosis The only stage of cellular respiration that does NOT involve electron carriers Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules MAT8aa5_c7b5
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Glycolysis First stage of cellular respiration Chemiosmosis Uses the electrochemical gradient to produce substrate-level phosphorylation energy molecules Cirtic Acid Cycle (TCA cycle) Acetyl CoA serves as fuel for this stage of cellular respiration Pyruvate Oxidation Short stage that produces carbon dioxide (CO2) and NADH MAT8aa5_f798
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Chemiosmosis Stage of cellular respiration that produces the most ATP Cirtic Acid Cycle (TCA cycle) This stage was identified by Hans Krebs and William Johnson in 1937 and is sometimes called the "Krebs cycle" Glycolysis First stage of cellular respiration Pyruvate Oxidation Pyruvate must enter the mitochondrial matrix for this stage to begin Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient MAT8aa5_2f63
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Pyruvate Oxidation Pyruvate must enter the mitochondrial matrix for this stage to begin Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Cirtic Acid Cycle (TCA cycle) Final stage in the oxidation of glucose into carbon dioxide (CO2) Chemiosmosis Stage of cellular respiration that produces the most ATP MAT8aa5_0547
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Cirtic Acid Cycle (TCA cycle) At the end this stage, the four-carbon oxaloacetate has been regenerated, and the stage repeats. Pyruvate Oxidation Takes pyruvate as input and produces acetyl-CoA MAT8aa5_28ec
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Chemiosmosis Uses the electrochemical gradient to produce substrate-level phosphorylation energy molecules Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Pyruvate Oxidation Pyruvate must enter the mitochondrial matrix for this stage to begin Cirtic Acid Cycle (TCA cycle) Forms a GTP molecule which is equivalent to an ATP molecule Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell MAT8aa5_6a22
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Glycolysis First stage of cellular respiration Pyruvate Oxidation First stage of cellular respiration that occurs within the mitochondria organelles Chemiosmosis Uses the electrochemical gradient to produce substrate-level phosphorylation energy molecules Cirtic Acid Cycle (TCA cycle) For each molecule of glucose, this stage produces two (2) ATP, six (6) NADH, and two (2) FADH2 molecules MAT8aa5_0ac2
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Cirtic Acid Cycle (TCA cycle) The only stage of cellular respiration that produces the electron acceptor FADH2 Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Pyruvate Oxidation For each molecule of glucose, this stage produces zero (0) ATP and two (2) NADH molecules Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP MAT8aa5_0dd5
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Chemiosmosis Uses the electrochemical gradient to produce substrate-level phosphorylation energy molecules Cirtic Acid Cycle (TCA cycle) Acetyl CoA serves as fuel for this stage of cellular respiration Glycolysis First stage of cellular respiration Pyruvate Oxidation A stage that links glycolysis to the rest of cellular respiration Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient MAT8aa5_9d45
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Cirtic Acid Cycle (TCA cycle) Forms a GTP molecule which is equivalent to an ATP molecule Pyruvate Oxidation This stage is entirely carried out by a large enzyme complex called the pyruvate dehydrogenase complex Glycolysis First stage of cellular respiration Chemiosmosis The protein ATP synthase works like a water turbine in a dam MAT8aa5_f7d4
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Chemiosmosis The protein ATP synthase works like a water turbine in a dam Pyruvate Oxidation Short stage that produces carbon dioxide (CO2) and NADH Cirtic Acid Cycle (TCA cycle) At the end this stage, the four-carbon oxaloacetate has been regenerated, and the stage repeats. Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 MAT8aa5_3916
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Chemiosmosis Uses the electrochemical gradient to produce substrate-level phosphorylation energy molecules Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Pyruvate Oxidation Pyruvate must enter the mitochondrial matrix for this stage to begin Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Cirtic Acid Cycle (TCA cycle) At the end this stage, the four-carbon oxaloacetate has been regenerated, and the stage repeats. MAT8aa5_a97f
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Cirtic Acid Cycle (TCA cycle) Acetyl CoA serves as fuel for this stage of cellular respiration Pyruvate Oxidation Pyruvate must enter the mitochondrial matrix for this stage to begin Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP MAT8aa5_a474
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Pyruvate Oxidation First stage of cellular respiration that occurs within the mitochondria organelles Cirtic Acid Cycle (TCA cycle) Starts by joining a four carbon sugar and a two carbon sugar Chemiosmosis The only stage of cellular respiration that does NOT involve electron carriers Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons MAT8aa5_a42e
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Cirtic Acid Cycle (TCA cycle) The only stage of cellular respiration that produces the electron acceptor FADH2 Chemiosmosis Stage of cellular respiration that produces the most ATP Glycolysis First stage of cellular respiration Pyruvate Oxidation For each molecule of glucose, this stage produces zero (0) ATP and two (2) NADH molecules Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 MAT8aa5_cff4
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Cirtic Acid Cycle (TCA cycle) Acetyl CoA serves as fuel for this stage of cellular respiration Pyruvate Oxidation This stage is entirely carried out by a large enzyme complex called the pyruvate dehydrogenase complex Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Chemiosmosis The only stage of cellular respiration that does NOT involve electron carriers MAT8aa5_9455
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP Pyruvate Oxidation For each molecule of glucose, this stage produces zero (0) ATP and two (2) NADH molecules Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Cirtic Acid Cycle (TCA cycle) For each molecule of glucose, this stage produces two (2) ATP, six (6) NADH, and two (2) FADH2 molecules Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell MAT8aa5_e82d
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Cirtic Acid Cycle (TCA cycle) The only stage of cellular respiration that produces the electron acceptor FADH2 Glycolysis First stage of cellular respiration Pyruvate Oxidation Short stage that produces carbon dioxide (CO2) and NADH Chemiosmosis The only stage of cellular respiration that does NOT involve electron carriers MAT8aa5_1889
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Pyruvate Oxidation A stage that links glycolysis to the rest of cellular respiration Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Cirtic Acid Cycle (TCA cycle) At the end this stage, the four-carbon oxaloacetate has been regenerated, and the stage repeats. Chemiosmosis Stage of cellular respiration that produces the most ATP MAT8aa5_f505
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Cirtic Acid Cycle (TCA cycle) For each molecule of glucose, this stage produces two (2) ATP, six (6) NADH, and two (2) FADH2 molecules Pyruvate Oxidation Short stage that produces carbon dioxide (CO2) and NADH Chemiosmosis The only stage of cellular respiration that does NOT involve electron carriers Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell MAT8aa5_3441
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Cirtic Acid Cycle (TCA cycle) This stage was identified by Hans Krebs and William Johnson in 1937 and is sometimes called the "Krebs cycle" Pyruvate Oxidation This stage is entirely carried out by a large enzyme complex called the pyruvate dehydrogenase complex Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Chemiosmosis The protein ATP synthase works like a water turbine in a dam MAT8aa5_bf0d
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Chemiosmosis Stage of cellular respiration that produces the most ATP Cirtic Acid Cycle (TCA cycle) Begins with the transfer of a two-carbon acetyl group to a four-carbon acceptor to form a six-carbon compound Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell Pyruvate Oxidation First stage of cellular respiration that occurs within the mitochondria organelles MAT8aa5_d7ea
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Chemiosmosis The only stage of cellular respiration that does NOT involve electron carriers Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Pyruvate Oxidation Takes pyruvate as input and produces acetyl-CoA Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell Cirtic Acid Cycle (TCA cycle) Begins with the transfer of a two-carbon acetyl group to a four-carbon acceptor to form a six-carbon compound MAT8aa5_3001
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Pyruvate Oxidation Takes pyruvate as input and produces acetyl-CoA Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell Cirtic Acid Cycle (TCA cycle) Starts by joining a four carbon sugar and a two carbon sugar Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Chemiosmosis The protein ATP synthase works like a water turbine in a dam MAT8aa5_580b
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Pyruvate Oxidation Pyruvate must enter the mitochondrial matrix for this stage to begin Cirtic Acid Cycle (TCA cycle) The only stage of cellular respiration that produces the electron acceptor FADH2 Chemiosmosis Uses the electrochemical gradient to produce substrate-level phosphorylation energy molecules Glycolysis First stage of cellular respiration MAT8aa5_648a
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Chemiosmosis Stage of cellular respiration that produces the most ATP Pyruvate Oxidation First stage of cellular respiration that occurs within the mitochondria organelles Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Cirtic Acid Cycle (TCA cycle) Forms a GTP molecule which is equivalent to an ATP molecule Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell MAT8aa5_85c7
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell Chemiosmosis Uses the electrochemical gradient to produce substrate-level phosphorylation energy molecules Pyruvate Oxidation Pyruvate must enter the mitochondrial matrix for this stage to begin Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Cirtic Acid Cycle (TCA cycle) Begins with the transfer of a two-carbon acetyl group to a four-carbon acceptor to form a six-carbon compound MAT8aa5_ee94
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Pyruvate Oxidation A stage that links glycolysis to the rest of cellular respiration Cirtic Acid Cycle (TCA cycle) Forms a GTP molecule which is equivalent to an ATP molecule Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Chemiosmosis The protein ATP synthase works like a water turbine in a dam MAT8aa5_1808
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell Chemiosmosis Stage of cellular respiration that produces the most ATP Pyruvate Oxidation Short stage that produces carbon dioxide (CO2) and NADH Cirtic Acid Cycle (TCA cycle) Begins with the transfer of a two-carbon acetyl group to a four-carbon acceptor to form a six-carbon compound MAT8aa5_0c21
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell Cirtic Acid Cycle (TCA cycle) Final stage in the oxidation of glucose into carbon dioxide (CO2) Pyruvate Oxidation This stage is entirely carried out by a large enzyme complex called the pyruvate dehydrogenase complex Chemiosmosis The only stage of cellular respiration that does NOT involve electron carriers Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient MAT8aa5_7768
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Cirtic Acid Cycle (TCA cycle) Begins with the transfer of a two-carbon acetyl group to a four-carbon acceptor to form a six-carbon compound Pyruvate Oxidation Takes pyruvate as input and produces acetyl-CoA Chemiosmosis Stage of cellular respiration that produces the most ATP MAT8aa5_9e4c
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Pyruvate Oxidation A stage that links glycolysis to the rest of cellular respiration Chemiosmosis The protein ATP synthase works like a water turbine in a dam Cirtic Acid Cycle (TCA cycle) Begins with the transfer of a two-carbon acetyl group to a four-carbon acceptor to form a six-carbon compound Glycolysis First stage of cellular respiration MAT8aa5_ab37
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Pyruvate Oxidation First stage of cellular respiration that occurs within the mitochondria organelles Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Cirtic Acid Cycle (TCA cycle) The only stage of cellular respiration that produces the electron acceptor FADH2 Chemiosmosis Uses the electrochemical gradient to produce substrate-level phosphorylation energy molecules MAT8aa5_282b
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Cirtic Acid Cycle (TCA cycle) The only stage of cellular respiration that produces the electron acceptor FADH2 Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Chemiosmosis Uses the electrochemical gradient to produce substrate-level phosphorylation energy molecules Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell Pyruvate Oxidation A stage that links glycolysis to the rest of cellular respiration MAT8aa5_0312
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Cirtic Acid Cycle (TCA cycle) Starts by joining a four carbon sugar and a two carbon sugar Chemiosmosis Stage of cellular respiration that produces the most ATP Glycolysis First stage of cellular respiration Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Pyruvate Oxidation For each molecule of glucose, this stage produces zero (0) ATP and two (2) NADH molecules MAT8aa5_ed09
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Cirtic Acid Cycle (TCA cycle) Final stage in the oxidation of glucose into carbon dioxide (CO2) Glycolysis First stage of cellular respiration Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Pyruvate Oxidation Short stage that produces carbon dioxide (CO2) and NADH Chemiosmosis The only stage of cellular respiration that does NOT involve electron carriers MAT8aa5_d7af
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Pyruvate Oxidation Takes pyruvate as input and produces acetyl-CoA Cirtic Acid Cycle (TCA cycle) The only stage of cellular respiration that produces the electron acceptor FADH2 Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 MAT8aa5_f420
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Pyruvate Oxidation Pyruvate must enter the mitochondrial matrix for this stage to begin Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Chemiosmosis The only stage of cellular respiration that does NOT involve electron carriers Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Cirtic Acid Cycle (TCA cycle) Starts by joining a four carbon sugar and a two carbon sugar MAT8aa5_7af0
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Cirtic Acid Cycle (TCA cycle) Acetyl CoA serves as fuel for this stage of cellular respiration Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP Glycolysis First stage of cellular respiration Pyruvate Oxidation For each molecule of glucose, this stage produces zero (0) ATP and two (2) NADH molecules MAT8aa5_7163
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Pyruvate Oxidation A stage that links glycolysis to the rest of cellular respiration Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Chemiosmosis The protein ATP synthase works like a water turbine in a dam Cirtic Acid Cycle (TCA cycle) This stage was identified by Hans Krebs and William Johnson in 1937 and is sometimes called the "Krebs cycle" MAT8aa5_4202
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Cirtic Acid Cycle (TCA cycle) The only stage of cellular respiration that produces the electron acceptor FADH2 Chemiosmosis The only stage of cellular respiration that does NOT involve electron carriers Pyruvate Oxidation This stage is entirely carried out by a large enzyme complex called the pyruvate dehydrogenase complex Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient MAT8aa5_2449
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Chemiosmosis The protein ATP synthase works like a water turbine in a dam Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Pyruvate Oxidation A stage that links glycolysis to the rest of cellular respiration Cirtic Acid Cycle (TCA cycle) Acetyl CoA serves as fuel for this stage of cellular respiration Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 MAT8aa5_70e3
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Cirtic Acid Cycle (TCA cycle) At the end this stage, the four-carbon oxaloacetate has been regenerated, and the stage repeats. Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Glycolysis First stage of cellular respiration Pyruvate Oxidation Takes pyruvate as input and produces acetyl-CoA Chemiosmosis Stage of cellular respiration that produces the most ATP MAT8aa5_2a91
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Pyruvate Oxidation This stage is entirely carried out by a large enzyme complex called the pyruvate dehydrogenase complex Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Glycolysis First stage of cellular respiration Cirtic Acid Cycle (TCA cycle) Final stage in the oxidation of glucose into carbon dioxide (CO2) MAT8aa5_3c49
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP Pyruvate Oxidation A stage that links glycolysis to the rest of cellular respiration Cirtic Acid Cycle (TCA cycle) The only stage of cellular respiration that produces the electron acceptor FADH2 MAT8aa5_533c
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Cirtic Acid Cycle (TCA cycle) Begins with the transfer of a two-carbon acetyl CoA to a four-carbon oxaloacetate to form a six-carbon citrate Chemiosmosis The protein ATP synthase works like a water turbine in a dam Pyruvate Oxidation First stage of cellular respiration that occurs within the mitochondria organelles Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules MAT8aa5_d252
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Chemiosmosis The only stage of cellular respiration that does NOT involve electron carriers Cirtic Acid Cycle (TCA cycle) Acetyl CoA serves as fuel for this stage of cellular respiration Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Glycolysis First stage of cellular respiration Pyruvate Oxidation First stage of cellular respiration that occurs within the mitochondria organelles MAT8aa5_08c3
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Pyruvate Oxidation A stage that links glycolysis to the rest of cellular respiration Glycolysis First stage of cellular respiration Chemiosmosis The only stage of cellular respiration that does NOT involve electron carriers Cirtic Acid Cycle (TCA cycle) This stage was identified by Hans Krebs and William Johnson in 1937 and is sometimes called the "Krebs cycle" MAT8aa5_4309
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell Cirtic Acid Cycle (TCA cycle) At the end this stage, the four-carbon oxaloacetate has been regenerated, and the stage repeats. Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Chemiosmosis Uses the electrochemical gradient to produce substrate-level phosphorylation energy molecules Pyruvate Oxidation Pyruvate must enter the mitochondrial matrix for this stage to begin MAT8aa5_f983
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP Pyruvate Oxidation Short stage that produces carbon dioxide (CO2) and NADH Cirtic Acid Cycle (TCA cycle) This stage was identified by Hans Krebs and William Johnson in 1937 and is sometimes called the "Krebs cycle" Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 MAT8aa5_8ec5
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell Pyruvate Oxidation First stage of cellular respiration that occurs within the mitochondria organelles Cirtic Acid Cycle (TCA cycle) Acetyl CoA serves as fuel for this stage of cellular respiration Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Chemiosmosis The protein ATP synthase works like a water turbine in a dam MAT8aa5_e59a
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Pyruvate Oxidation Takes pyruvate as input and produces acetyl-CoA Chemiosmosis Stage of cellular respiration that produces the most ATP Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Glycolysis First stage of cellular respiration Cirtic Acid Cycle (TCA cycle) Starts by joining a four carbon sugar and a two carbon sugar MAT8aa5_c650
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Cirtic Acid Cycle (TCA cycle) Begins with the transfer of a two-carbon acetyl group to a four-carbon acceptor to form a six-carbon compound Chemiosmosis Stage of cellular respiration that produces the most ATP Pyruvate Oxidation For each molecule of glucose, this stage produces zero (0) ATP and two (2) NADH molecules Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules MAT8aa5_5bb1
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Pyruvate Oxidation Short stage that produces carbon dioxide (CO2) and NADH Chemiosmosis The protein ATP synthase works like a water turbine in a dam Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell Cirtic Acid Cycle (TCA cycle) Begins with the transfer of a two-carbon acetyl CoA to a four-carbon oxaloacetate to form a six-carbon citrate MAT8aa5_649f
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Cirtic Acid Cycle (TCA cycle) This stage was identified by Hans Krebs and William Johnson in 1937 and is sometimes called the "Krebs cycle" Pyruvate Oxidation First stage of cellular respiration that occurs within the mitochondria organelles Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP MAT8aa5_c1b8
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Pyruvate Oxidation First stage of cellular respiration that occurs within the mitochondria organelles Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Chemiosmosis Stage of cellular respiration that produces the most ATP Cirtic Acid Cycle (TCA cycle) The only stage of cellular respiration that produces the electron acceptor FADH2 Glycolysis First stage of cellular respiration MAT8aa5_c754
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Chemiosmosis Uses the electrochemical gradient to produce substrate-level phosphorylation energy molecules Cirtic Acid Cycle (TCA cycle) Begins with the transfer of a two-carbon acetyl group to a four-carbon acceptor to form a six-carbon compound Pyruvate Oxidation Pyruvate must enter the mitochondrial matrix for this stage to begin Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient MAT8aa5_1491
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Cirtic Acid Cycle (TCA cycle) Begins with the transfer of a two-carbon acetyl group to a four-carbon acceptor to form a six-carbon compound Pyruvate Oxidation Pyruvate must enter the mitochondrial matrix for this stage to begin Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules MAT8aa5_c453
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Chemiosmosis The protein ATP synthase works like a water turbine in a dam Pyruvate Oxidation Short stage that produces carbon dioxide (CO2) and NADH Cirtic Acid Cycle (TCA cycle) The only stage of cellular respiration that produces the electron acceptor FADH2 Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell MAT8aa5_cc05
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Cirtic Acid Cycle (TCA cycle) This stage was identified by Hans Krebs and William Johnson in 1937 and is sometimes called the "Krebs cycle" Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP Pyruvate Oxidation A stage that links glycolysis to the rest of cellular respiration Glycolysis First stage of cellular respiration MAT8aa5_cfe4
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Pyruvate Oxidation For each molecule of glucose, this stage produces zero (0) ATP and two (2) NADH molecules Chemiosmosis Uses the electrochemical gradient to produce substrate-level phosphorylation energy molecules Cirtic Acid Cycle (TCA cycle) Begins with the transfer of a two-carbon acetyl group to a four-carbon acceptor to form a six-carbon compound Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell MAT8aa5_d47f
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Cirtic Acid Cycle (TCA cycle) Forms a GTP molecule which is equivalent to an ATP molecule Pyruvate Oxidation For each molecule of glucose, this stage produces zero (0) ATP and two (2) NADH molecules Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Chemiosmosis Uses the electrochemical gradient to produce substrate-level phosphorylation energy molecules MAT8aa5_f0f5
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Glycolysis First stage of cellular respiration Chemiosmosis Stage of cellular respiration that produces the most ATP Cirtic Acid Cycle (TCA cycle) Forms a GTP molecule which is equivalent to an ATP molecule Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Pyruvate Oxidation For each molecule of glucose, this stage produces zero (0) ATP and two (2) NADH molecules MAT8aa5_7273
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Pyruvate Oxidation Short stage that produces carbon dioxide (CO2) and NADH Chemiosmosis The protein ATP synthase works like a water turbine in a dam Cirtic Acid Cycle (TCA cycle) Forms a GTP molecule which is equivalent to an ATP molecule Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules MAT8aa5_76a8
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Cirtic Acid Cycle (TCA cycle) This stage was identified by Hans Krebs and William Johnson in 1937 and is sometimes called the "Krebs cycle" Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Pyruvate Oxidation First stage of cellular respiration that occurs within the mitochondria organelles Chemiosmosis The protein ATP synthase works like a water turbine in a dam MAT8aa5_b89d
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Cirtic Acid Cycle (TCA cycle) Begins with the transfer of a two-carbon acetyl group to a four-carbon acceptor to form a six-carbon compound Chemiosmosis The only stage of cellular respiration that does NOT involve electron carriers Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Pyruvate Oxidation This stage is entirely carried out by a large enzyme complex called the pyruvate dehydrogenase complex MAT8aa5_f883
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Pyruvate Oxidation For each molecule of glucose, this stage produces zero (0) ATP and two (2) NADH molecules Cirtic Acid Cycle (TCA cycle) Begins with the transfer of a two-carbon acetyl CoA to a four-carbon oxaloacetate to form a six-carbon citrate Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Chemiosmosis Stage of cellular respiration that produces the most ATP Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules MAT8aa5_661a
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Chemiosmosis Uses the electrochemical gradient to produce substrate-level phosphorylation energy molecules Pyruvate Oxidation First stage of cellular respiration that occurs within the mitochondria organelles Cirtic Acid Cycle (TCA cycle) This stage was identified by Hans Krebs and William Johnson in 1937 and is sometimes called the "Krebs cycle" MAT8aa5_9342
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Cirtic Acid Cycle (TCA cycle) The only stage of cellular respiration that produces the electron acceptor FADH2 Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Pyruvate Oxidation Takes pyruvate as input and produces acetyl-CoA Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell Chemiosmosis Stage of cellular respiration that produces the most ATP MAT8aa5_724c
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Chemiosmosis The protein ATP synthase works like a water turbine in a dam Pyruvate Oxidation Short stage that produces carbon dioxide (CO2) and NADH Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Cirtic Acid Cycle (TCA cycle) Acetyl CoA serves as fuel for this stage of cellular respiration Glycolysis First stage of cellular respiration MAT8aa5_6a06
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Chemiosmosis Stage of cellular respiration that produces the most ATP Pyruvate Oxidation Short stage that produces carbon dioxide (CO2) and NADH Cirtic Acid Cycle (TCA cycle) Starts by joining a four carbon sugar and a two carbon sugar Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell MAT8aa5_16e5
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Pyruvate Oxidation First stage of cellular respiration that occurs within the mitochondria organelles Chemiosmosis The protein ATP synthase works like a water turbine in a dam Cirtic Acid Cycle (TCA cycle) For each molecule of glucose, this stage produces two (2) ATP, six (6) NADH, and two (2) FADH2 molecules Glycolysis First stage of cellular respiration Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient MAT8aa5_a3e0
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Chemiosmosis Stage of cellular respiration that produces the most ATP Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Glycolysis First stage of cellular respiration Pyruvate Oxidation For each molecule of glucose, this stage produces zero (0) ATP and two (2) NADH molecules Cirtic Acid Cycle (TCA cycle) At the end this stage, the four-carbon oxaloacetate has been regenerated, and the stage repeats. MAT8aa5_8715
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Pyruvate Oxidation First stage of cellular respiration that occurs within the mitochondria organelles Chemiosmosis The protein ATP synthase works like a water turbine in a dam Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Cirtic Acid Cycle (TCA cycle) At the end this stage, the four-carbon oxaloacetate has been regenerated, and the stage repeats. MAT8aa5_b935
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Glycolysis First stage of cellular respiration Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Cirtic Acid Cycle (TCA cycle) Forms a GTP molecule which is equivalent to an ATP molecule Chemiosmosis Uses the electrochemical gradient to produce substrate-level phosphorylation energy molecules Pyruvate Oxidation Short stage that produces carbon dioxide (CO2) and NADH MAT8aa5_2473
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Glycolysis First stage of cellular respiration Chemiosmosis The only stage of cellular respiration that does NOT involve electron carriers Pyruvate Oxidation Short stage that produces carbon dioxide (CO2) and NADH Cirtic Acid Cycle (TCA cycle) Begins with the transfer of a two-carbon acetyl group to a four-carbon acceptor to form a six-carbon compound Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 MAT8aa5_27e4
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Cirtic Acid Cycle (TCA cycle) For each molecule of glucose, this stage produces two (2) ATP, six (6) NADH, and two (2) FADH2 molecules Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Chemiosmosis Uses the electrochemical gradient to produce substrate-level phosphorylation energy molecules Pyruvate Oxidation Takes pyruvate as input and produces acetyl-CoA MAT8aa5_cae1
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Cirtic Acid Cycle (TCA cycle) For each molecule of glucose, this stage produces two (2) ATP, six (6) NADH, and two (2) FADH2 molecules Pyruvate Oxidation First stage of cellular respiration that occurs within the mitochondria organelles Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP MAT8aa5_8b09
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Chemiosmosis The only stage of cellular respiration that does NOT involve electron carriers Pyruvate Oxidation Pyruvate must enter the mitochondrial matrix for this stage to begin Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Cirtic Acid Cycle (TCA cycle) Forms a GTP molecule which is equivalent to an ATP molecule MAT8aa5_40d5
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Chemiosmosis Uses the electrochemical gradient to produce substrate-level phosphorylation energy molecules Glycolysis First stage of cellular respiration Pyruvate Oxidation Pyruvate must enter the mitochondrial matrix for this stage to begin Cirtic Acid Cycle (TCA cycle) Final stage in the oxidation of glucose into carbon dioxide (CO2) Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 MAT8aa5_b1b4
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Cirtic Acid Cycle (TCA cycle) For each molecule of glucose, this stage produces two (2) ATP, six (6) NADH, and two (2) FADH2 molecules Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Pyruvate Oxidation Short stage that produces carbon dioxide (CO2) and NADH Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP MAT8aa5_875c
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Cirtic Acid Cycle (TCA cycle) Begins with the transfer of a two-carbon acetyl CoA to a four-carbon oxaloacetate to form a six-carbon citrate Pyruvate Oxidation A stage that links glycolysis to the rest of cellular respiration Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Chemiosmosis The only stage of cellular respiration that does NOT involve electron carriers Glycolysis First stage of cellular respiration MAT8aa5_4edc
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Cirtic Acid Cycle (TCA cycle) For each molecule of glucose, this stage produces two (2) ATP, six (6) NADH, and two (2) FADH2 molecules Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Glycolysis First stage of cellular respiration Pyruvate Oxidation For each molecule of glucose, this stage produces zero (0) ATP and two (2) NADH molecules Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP MAT8aa5_3883
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Cirtic Acid Cycle (TCA cycle) At the end this stage, the four-carbon oxaloacetate has been regenerated, and the stage repeats. Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Pyruvate Oxidation For each molecule of glucose, this stage produces zero (0) ATP and two (2) NADH molecules Glycolysis First stage of cellular respiration Chemiosmosis Stage of cellular respiration that produces the most ATP MAT8aa5_b901
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell Cirtic Acid Cycle (TCA cycle) Starts by joining a four carbon sugar and a two carbon sugar Chemiosmosis Stage of cellular respiration that produces the most ATP Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Pyruvate Oxidation This stage is entirely carried out by a large enzyme complex called the pyruvate dehydrogenase complex MAT8aa5_c7ad
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Pyruvate Oxidation Pyruvate must enter the mitochondrial matrix for this stage to begin Chemiosmosis The only stage of cellular respiration that does NOT involve electron carriers Glycolysis First stage of cellular respiration Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Cirtic Acid Cycle (TCA cycle) Begins with the transfer of a two-carbon acetyl group to a four-carbon acceptor to form a six-carbon compound MAT8aa5_2326
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Cirtic Acid Cycle (TCA cycle) At the end this stage, the four-carbon oxaloacetate has been regenerated, and the stage repeats. Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Pyruvate Oxidation For each molecule of glucose, this stage produces zero (0) ATP and two (2) NADH molecules Chemiosmosis Stage of cellular respiration that produces the most ATP MAT8aa5_af0f
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Pyruvate Oxidation Short stage that produces carbon dioxide (CO2) and NADH Cirtic Acid Cycle (TCA cycle) Forms a GTP molecule which is equivalent to an ATP molecule Chemiosmosis The only stage of cellular respiration that does NOT involve electron carriers MAT8aa5_6595
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Chemiosmosis The only stage of cellular respiration that does NOT involve electron carriers Cirtic Acid Cycle (TCA cycle) Begins with the transfer of a two-carbon acetyl group to a four-carbon acceptor to form a six-carbon compound Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell Pyruvate Oxidation Short stage that produces carbon dioxide (CO2) and NADH MAT8aa5_c722
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Pyruvate Oxidation This stage is entirely carried out by a large enzyme complex called the pyruvate dehydrogenase complex Chemiosmosis Stage of cellular respiration that produces the most ATP Cirtic Acid Cycle (TCA cycle) At the end this stage, the four-carbon oxaloacetate has been regenerated, and the stage repeats. MAT8aa5_fce1
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Pyruvate Oxidation For each molecule of glucose, this stage produces zero (0) ATP and two (2) NADH molecules Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Chemiosmosis The protein ATP synthase works like a water turbine in a dam Cirtic Acid Cycle (TCA cycle) Acetyl CoA serves as fuel for this stage of cellular respiration Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient MAT8aa5_c639
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Cirtic Acid Cycle (TCA cycle) Begins with the transfer of a two-carbon acetyl CoA to a four-carbon oxaloacetate to form a six-carbon citrate Pyruvate Oxidation Takes pyruvate as input and produces acetyl-CoA Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons MAT8aa5_7519
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Cirtic Acid Cycle (TCA cycle) Begins with the transfer of a two-carbon acetyl group to a four-carbon acceptor to form a six-carbon compound Pyruvate Oxidation First stage of cellular respiration that occurs within the mitochondria organelles Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Chemiosmosis Stage of cellular respiration that produces the most ATP Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient MAT8aa5_555b
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Pyruvate Oxidation Pyruvate must enter the mitochondrial matrix for this stage to begin Glycolysis First stage of cellular respiration Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Chemiosmosis The protein ATP synthase works like a water turbine in a dam Cirtic Acid Cycle (TCA cycle) Final stage in the oxidation of glucose into carbon dioxide (CO2) MAT8aa5_6054
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Cirtic Acid Cycle (TCA cycle) For each molecule of glucose, this stage produces two (2) ATP, six (6) NADH, and two (2) FADH2 molecules Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Pyruvate Oxidation Short stage that produces carbon dioxide (CO2) and NADH Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP MAT8aa5_d525
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Cirtic Acid Cycle (TCA cycle) Acetyl CoA serves as fuel for this stage of cellular respiration Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell Pyruvate Oxidation Short stage that produces carbon dioxide (CO2) and NADH Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient MAT8aa5_3a42
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Pyruvate Oxidation Takes pyruvate as input and produces acetyl-CoA Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Chemiosmosis Uses the electrochemical gradient to produce substrate-level phosphorylation energy molecules Cirtic Acid Cycle (TCA cycle) This stage was identified by Hans Krebs and William Johnson in 1937 and is sometimes called the "Krebs cycle" Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell MAT8aa5_ef9f
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Pyruvate Oxidation For each molecule of glucose, this stage produces zero (0) ATP and two (2) NADH molecules Glycolysis First stage of cellular respiration Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP Cirtic Acid Cycle (TCA cycle) Acetyl CoA serves as fuel for this stage of cellular respiration Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons MAT8aa5_188c
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Cirtic Acid Cycle (TCA cycle) Forms a GTP molecule which is equivalent to an ATP molecule Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Pyruvate Oxidation For each molecule of glucose, this stage produces zero (0) ATP and two (2) NADH molecules MAT8aa5_684d
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Chemiosmosis The protein ATP synthase works like a water turbine in a dam Pyruvate Oxidation For each molecule of glucose, this stage produces zero (0) ATP and two (2) NADH molecules Cirtic Acid Cycle (TCA cycle) Begins with the transfer of a two-carbon acetyl CoA to a four-carbon oxaloacetate to form a six-carbon citrate Glycolysis First stage of cellular respiration MAT8aa5_e05d
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Pyruvate Oxidation For each molecule of glucose, this stage produces zero (0) ATP and two (2) NADH molecules Chemiosmosis The protein ATP synthase works like a water turbine in a dam Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Cirtic Acid Cycle (TCA cycle) Begins with the transfer of a two-carbon acetyl group to a four-carbon acceptor to form a six-carbon compound MAT8aa5_9e83
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Cirtic Acid Cycle (TCA cycle) The only stage of cellular respiration that produces the electron acceptor FADH2 Glycolysis First stage of cellular respiration Pyruvate Oxidation First stage of cellular respiration that occurs within the mitochondria organelles Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Chemiosmosis The protein ATP synthase works like a water turbine in a dam MAT8aa5_0b7c
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Pyruvate Oxidation Takes pyruvate as input and produces acetyl-CoA Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell Chemiosmosis The only stage of cellular respiration that does NOT involve electron carriers Cirtic Acid Cycle (TCA cycle) At the end this stage, the four-carbon oxaloacetate has been regenerated, and the stage repeats. Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons MAT8aa5_8c9f
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell Chemiosmosis Uses the electrochemical gradient to produce substrate-level phosphorylation energy molecules Cirtic Acid Cycle (TCA cycle) Begins with the transfer of a two-carbon acetyl group to a four-carbon acceptor to form a six-carbon compound Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Pyruvate Oxidation This stage is entirely carried out by a large enzyme complex called the pyruvate dehydrogenase complex MAT8aa5_145f
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Chemiosmosis The only stage of cellular respiration that does NOT involve electron carriers Cirtic Acid Cycle (TCA cycle) Final stage in the oxidation of glucose into carbon dioxide (CO2) Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell Pyruvate Oxidation Takes pyruvate as input and produces acetyl-CoA MAT8aa5_6783
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Cirtic Acid Cycle (TCA cycle) Starts by joining a four carbon sugar and a two carbon sugar Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP Pyruvate Oxidation Takes pyruvate as input and produces acetyl-CoA Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 MAT8aa5_264d
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Cirtic Acid Cycle (TCA cycle) This stage was identified by Hans Krebs and William Johnson in 1937 and is sometimes called the "Krebs cycle" Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP Pyruvate Oxidation Takes pyruvate as input and produces acetyl-CoA MAT8aa5_a650
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell Pyruvate Oxidation Short stage that produces carbon dioxide (CO2) and NADH Cirtic Acid Cycle (TCA cycle) Acetyl CoA serves as fuel for this stage of cellular respiration Chemiosmosis Stage of cellular respiration that produces the most ATP MAT8aa5_06d3
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Pyruvate Oxidation Short stage that produces carbon dioxide (CO2) and NADH Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Chemiosmosis Uses the electrochemical gradient to produce substrate-level phosphorylation energy molecules Cirtic Acid Cycle (TCA cycle) Begins with the transfer of a two-carbon acetyl group to a four-carbon acceptor to form a six-carbon compound MAT8aa5_1f77
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Pyruvate Oxidation Short stage that produces carbon dioxide (CO2) and NADH Chemiosmosis The protein ATP synthase works like a water turbine in a dam Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Cirtic Acid Cycle (TCA cycle) The only stage of cellular respiration that produces the electron acceptor FADH2 MAT8aa5_1105
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP Pyruvate Oxidation A stage that links glycolysis to the rest of cellular respiration Cirtic Acid Cycle (TCA cycle) The only stage of cellular respiration that produces the electron acceptor FADH2 Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules MAT8aa5_c63e
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Pyruvate Oxidation For each molecule of glucose, this stage produces zero (0) ATP and two (2) NADH molecules Glycolysis First stage of cellular respiration Cirtic Acid Cycle (TCA cycle) Starts by joining a four carbon sugar and a two carbon sugar Chemiosmosis Uses the electrochemical gradient to produce substrate-level phosphorylation energy molecules Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 MAT8aa5_3e98
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Glycolysis First stage of cellular respiration Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Pyruvate Oxidation This stage is entirely carried out by a large enzyme complex called the pyruvate dehydrogenase complex Chemiosmosis The only stage of cellular respiration that does NOT involve electron carriers Cirtic Acid Cycle (TCA cycle) Forms a GTP molecule which is equivalent to an ATP molecule MAT8aa5_8544
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Glycolysis First stage of cellular respiration Chemiosmosis The only stage of cellular respiration that does NOT involve electron carriers Cirtic Acid Cycle (TCA cycle) Begins with the transfer of a two-carbon acetyl group to a four-carbon acceptor to form a six-carbon compound Pyruvate Oxidation Takes pyruvate as input and produces acetyl-CoA Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient MAT8aa5_62a0
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell Cirtic Acid Cycle (TCA cycle) The only stage of cellular respiration that produces the electron acceptor FADH2 Pyruvate Oxidation Pyruvate must enter the mitochondrial matrix for this stage to begin Chemiosmosis Uses the electrochemical gradient to produce substrate-level phosphorylation energy molecules MAT8aa5_0abb
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Chemiosmosis The only stage of cellular respiration that does NOT involve electron carriers Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Cirtic Acid Cycle (TCA cycle) Starts by joining a four carbon sugar and a two carbon sugar Pyruvate Oxidation Pyruvate must enter the mitochondrial matrix for this stage to begin MAT8aa5_96df
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Chemiosmosis Stage of cellular respiration that produces the most ATP Pyruvate Oxidation Short stage that produces carbon dioxide (CO2) and NADH Cirtic Acid Cycle (TCA cycle) Forms a GTP molecule which is equivalent to an ATP molecule MAT8aa5_7acb
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Pyruvate Oxidation Takes pyruvate as input and produces acetyl-CoA Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Cirtic Acid Cycle (TCA cycle) At the end this stage, the four-carbon oxaloacetate has been regenerated, and the stage repeats. Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell MAT8aa5_b137
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP Cirtic Acid Cycle (TCA cycle) The only stage of cellular respiration that produces the electron acceptor FADH2 Glycolysis First stage of cellular respiration Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Pyruvate Oxidation Pyruvate must enter the mitochondrial matrix for this stage to begin MAT8aa5_29f8
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Chemiosmosis The protein ATP synthase works like a water turbine in a dam Cirtic Acid Cycle (TCA cycle) The only stage of cellular respiration that produces the electron acceptor FADH2 Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Pyruvate Oxidation Short stage that produces carbon dioxide (CO2) and NADH MAT8aa5_6025
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Pyruvate Oxidation Takes pyruvate as input and produces acetyl-CoA Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Cirtic Acid Cycle (TCA cycle) Starts by joining a four carbon sugar and a two carbon sugar Chemiosmosis The protein ATP synthase works like a water turbine in a dam MAT8aa5_7432
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Chemiosmosis The protein ATP synthase works like a water turbine in a dam Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Cirtic Acid Cycle (TCA cycle) Starts by joining a four carbon sugar and a two carbon sugar Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Pyruvate Oxidation This stage is entirely carried out by a large enzyme complex called the pyruvate dehydrogenase complex MAT8aa5_c8c6
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Pyruvate Oxidation A stage that links glycolysis to the rest of cellular respiration Chemiosmosis Stage of cellular respiration that produces the most ATP Cirtic Acid Cycle (TCA cycle) At the end this stage, the four-carbon oxaloacetate has been regenerated, and the stage repeats. MAT8aa5_da73
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP Pyruvate Oxidation This stage is entirely carried out by a large enzyme complex called the pyruvate dehydrogenase complex Cirtic Acid Cycle (TCA cycle) Begins with the transfer of a two-carbon acetyl CoA to a four-carbon oxaloacetate to form a six-carbon citrate Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons MAT8aa5_5499
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Pyruvate Oxidation First stage of cellular respiration that occurs within the mitochondria organelles Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Glycolysis First stage of cellular respiration Cirtic Acid Cycle (TCA cycle) The only stage of cellular respiration that produces the electron acceptor FADH2 Chemiosmosis Uses the electrochemical gradient to produce substrate-level phosphorylation energy molecules MAT8aa5_0e5b
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Cirtic Acid Cycle (TCA cycle) At the end this stage, the four-carbon oxaloacetate has been regenerated, and the stage repeats. Chemiosmosis Stage of cellular respiration that produces the most ATP Pyruvate Oxidation For each molecule of glucose, this stage produces zero (0) ATP and two (2) NADH molecules Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules MAT8aa5_9636
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Pyruvate Oxidation A stage that links glycolysis to the rest of cellular respiration Cirtic Acid Cycle (TCA cycle) This stage was identified by Hans Krebs and William Johnson in 1937 and is sometimes called the "Krebs cycle" Chemiosmosis The protein ATP synthase works like a water turbine in a dam MAT8aa5_6397
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Cirtic Acid Cycle (TCA cycle) Forms a GTP molecule which is equivalent to an ATP molecule Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Chemiosmosis Stage of cellular respiration that produces the most ATP Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell Pyruvate Oxidation Takes pyruvate as input and produces acetyl-CoA MAT8aa5_9f67
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP Cirtic Acid Cycle (TCA cycle) Acetyl CoA serves as fuel for this stage of cellular respiration Pyruvate Oxidation A stage that links glycolysis to the rest of cellular respiration Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell MAT8aa5_3f7b
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Pyruvate Oxidation First stage of cellular respiration that occurs within the mitochondria organelles Cirtic Acid Cycle (TCA cycle) The only stage of cellular respiration that produces the electron acceptor FADH2 Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Chemiosmosis Uses the electrochemical gradient to produce substrate-level phosphorylation energy molecules Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell MAT8aa5_19f2
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Pyruvate Oxidation A stage that links glycolysis to the rest of cellular respiration Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Chemiosmosis The protein ATP synthase works like a water turbine in a dam Cirtic Acid Cycle (TCA cycle) Final stage in the oxidation of glucose into carbon dioxide (CO2) Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 MAT8aa5_9310
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Cirtic Acid Cycle (TCA cycle) For each molecule of glucose, this stage produces two (2) ATP, six (6) NADH, and two (2) FADH2 molecules Chemiosmosis The only stage of cellular respiration that does NOT involve electron carriers Pyruvate Oxidation Pyruvate must enter the mitochondrial matrix for this stage to begin Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell MAT8aa5_1626
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Pyruvate Oxidation This stage is entirely carried out by a large enzyme complex called the pyruvate dehydrogenase complex Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Chemiosmosis The protein ATP synthase works like a water turbine in a dam Cirtic Acid Cycle (TCA cycle) Starts by joining a four carbon sugar and a two carbon sugar Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient MAT8aa5_84b1
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Pyruvate Oxidation For each molecule of glucose, this stage produces zero (0) ATP and two (2) NADH molecules Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell Cirtic Acid Cycle (TCA cycle) Begins with the transfer of a two-carbon acetyl group to a four-carbon acceptor to form a six-carbon compound Chemiosmosis Stage of cellular respiration that produces the most ATP MAT8aa5_520b
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Pyruvate Oxidation This stage is entirely carried out by a large enzyme complex called the pyruvate dehydrogenase complex Cirtic Acid Cycle (TCA cycle) The only stage of cellular respiration that produces the electron acceptor FADH2 Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP MAT8aa5_d2b3
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Pyruvate Oxidation First stage of cellular respiration that occurs within the mitochondria organelles Cirtic Acid Cycle (TCA cycle) Acetyl CoA serves as fuel for this stage of cellular respiration Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules MAT8aa5_4333
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Cirtic Acid Cycle (TCA cycle) The only stage of cellular respiration that produces the electron acceptor FADH2 Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Chemiosmosis The only stage of cellular respiration that does NOT involve electron carriers Pyruvate Oxidation Pyruvate must enter the mitochondrial matrix for this stage to begin MAT8aa5_2387
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Chemiosmosis Stage of cellular respiration that produces the most ATP Cirtic Acid Cycle (TCA cycle) Begins with the transfer of a two-carbon acetyl group to a four-carbon acceptor to form a six-carbon compound Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Pyruvate Oxidation Takes pyruvate as input and produces acetyl-CoA MAT8aa5_2bee
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Pyruvate Oxidation For each molecule of glucose, this stage produces zero (0) ATP and two (2) NADH molecules Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell Cirtic Acid Cycle (TCA cycle) For each molecule of glucose, this stage produces two (2) ATP, six (6) NADH, and two (2) FADH2 molecules Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP MAT8aa5_b34b
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Pyruvate Oxidation A stage that links glycolysis to the rest of cellular respiration Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Cirtic Acid Cycle (TCA cycle) Acetyl CoA serves as fuel for this stage of cellular respiration MAT8aa5_c869
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Glycolysis First stage of cellular respiration Pyruvate Oxidation A stage that links glycolysis to the rest of cellular respiration Chemiosmosis The protein ATP synthase works like a water turbine in a dam Cirtic Acid Cycle (TCA cycle) Starts by joining a four carbon sugar and a two carbon sugar MAT8aa5_ce45
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Pyruvate Oxidation Short stage that produces carbon dioxide (CO2) and NADH Glycolysis First stage of cellular respiration Cirtic Acid Cycle (TCA cycle) For each molecule of glucose, this stage produces two (2) ATP, six (6) NADH, and two (2) FADH2 molecules Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Chemiosmosis The only stage of cellular respiration that does NOT involve electron carriers MAT8aa5_42a9
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Cirtic Acid Cycle (TCA cycle) Forms a GTP molecule which is equivalent to an ATP molecule Pyruvate Oxidation First stage of cellular respiration that occurs within the mitochondria organelles Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules MAT8aa5_e42c
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Pyruvate Oxidation Pyruvate must enter the mitochondrial matrix for this stage to begin Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP Cirtic Acid Cycle (TCA cycle) Acetyl CoA serves as fuel for this stage of cellular respiration Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient MAT8aa5_c446
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Pyruvate Oxidation First stage of cellular respiration that occurs within the mitochondria organelles Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Cirtic Acid Cycle (TCA cycle) The only stage of cellular respiration that produces the electron acceptor FADH2 Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 MAT8aa5_f58a
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Chemiosmosis The only stage of cellular respiration that does NOT involve electron carriers Pyruvate Oxidation A stage that links glycolysis to the rest of cellular respiration Cirtic Acid Cycle (TCA cycle) Begins with the transfer of a two-carbon acetyl group to a four-carbon acceptor to form a six-carbon compound Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons MAT8aa5_cf60
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Pyruvate Oxidation Short stage that produces carbon dioxide (CO2) and NADH Cirtic Acid Cycle (TCA cycle) Begins with the transfer of a two-carbon acetyl group to a four-carbon acceptor to form a six-carbon compound Chemiosmosis The only stage of cellular respiration that does NOT involve electron carriers Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules MAT8aa5_7a16
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Pyruvate Oxidation Takes pyruvate as input and produces acetyl-CoA Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Cirtic Acid Cycle (TCA cycle) Starts by joining a four carbon sugar and a two carbon sugar Chemiosmosis The protein ATP synthase works like a water turbine in a dam MAT8aa5_d656
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Chemiosmosis The protein ATP synthase works like a water turbine in a dam Pyruvate Oxidation Short stage that produces carbon dioxide (CO2) and NADH Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell Cirtic Acid Cycle (TCA cycle) This stage was identified by Hans Krebs and William Johnson in 1937 and is sometimes called the "Krebs cycle" Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient MAT8aa5_befc
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Glycolysis First stage of cellular respiration Chemiosmosis The only stage of cellular respiration that does NOT involve electron carriers Cirtic Acid Cycle (TCA cycle) Final stage in the oxidation of glucose into carbon dioxide (CO2) Pyruvate Oxidation For each molecule of glucose, this stage produces zero (0) ATP and two (2) NADH molecules Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons MAT8aa5_f9c4
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell Cirtic Acid Cycle (TCA cycle) At the end this stage, the four-carbon oxaloacetate has been regenerated, and the stage repeats. Chemiosmosis Uses the electrochemical gradient to produce substrate-level phosphorylation energy molecules Pyruvate Oxidation Takes pyruvate as input and produces acetyl-CoA MAT8aa5_4639
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Cirtic Acid Cycle (TCA cycle) Final stage in the oxidation of glucose into carbon dioxide (CO2) Pyruvate Oxidation For each molecule of glucose, this stage produces zero (0) ATP and two (2) NADH molecules Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Chemiosmosis Stage of cellular respiration that produces the most ATP Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons MAT8aa5_8291
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP Pyruvate Oxidation This stage is entirely carried out by a large enzyme complex called the pyruvate dehydrogenase complex Cirtic Acid Cycle (TCA cycle) Begins with the transfer of a two-carbon acetyl group to a four-carbon acceptor to form a six-carbon compound MAT8aa5_3eb1
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP Pyruvate Oxidation A stage that links glycolysis to the rest of cellular respiration Cirtic Acid Cycle (TCA cycle) For each molecule of glucose, this stage produces two (2) ATP, six (6) NADH, and two (2) FADH2 molecules MAT8aa5_e815
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell Chemiosmosis The only stage of cellular respiration that does NOT involve electron carriers Cirtic Acid Cycle (TCA cycle) Acetyl CoA serves as fuel for this stage of cellular respiration Pyruvate Oxidation A stage that links glycolysis to the rest of cellular respiration Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons MAT8aa5_14b5
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell Cirtic Acid Cycle (TCA cycle) Forms a GTP molecule which is equivalent to an ATP molecule Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Pyruvate Oxidation Short stage that produces carbon dioxide (CO2) and NADH Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP MAT8aa5_afb7
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Pyruvate Oxidation This stage is entirely carried out by a large enzyme complex called the pyruvate dehydrogenase complex Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Cirtic Acid Cycle (TCA cycle) For each molecule of glucose, this stage produces two (2) ATP, six (6) NADH, and two (2) FADH2 molecules MAT8aa5_9a51
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Cirtic Acid Cycle (TCA cycle) This stage was identified by Hans Krebs and William Johnson in 1937 and is sometimes called the "Krebs cycle" Chemiosmosis The protein ATP synthase works like a water turbine in a dam Pyruvate Oxidation This stage is entirely carried out by a large enzyme complex called the pyruvate dehydrogenase complex MAT8aa5_5e31
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Pyruvate Oxidation Short stage that produces carbon dioxide (CO2) and NADH Chemiosmosis The protein ATP synthase works like a water turbine in a dam Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Cirtic Acid Cycle (TCA cycle) The only stage of cellular respiration that produces the electron acceptor FADH2 MAT8aa5_4f6c
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Pyruvate Oxidation For each molecule of glucose, this stage produces zero (0) ATP and two (2) NADH molecules Cirtic Acid Cycle (TCA cycle) This stage was identified by Hans Krebs and William Johnson in 1937 and is sometimes called the "Krebs cycle" Glycolysis First stage of cellular respiration Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP MAT8aa5_0418
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Chemiosmosis The only stage of cellular respiration that does NOT involve electron carriers Pyruvate Oxidation First stage of cellular respiration that occurs within the mitochondria organelles Glycolysis First stage of cellular respiration Cirtic Acid Cycle (TCA cycle) Begins with the transfer of a two-carbon acetyl group to a four-carbon acceptor to form a six-carbon compound MAT8aa5_2994
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Pyruvate Oxidation Takes pyruvate as input and produces acetyl-CoA Glycolysis First stage of cellular respiration Chemiosmosis The protein ATP synthase works like a water turbine in a dam Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Cirtic Acid Cycle (TCA cycle) Acetyl CoA serves as fuel for this stage of cellular respiration MAT8aa5_4bbe
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Pyruvate Oxidation Short stage that produces carbon dioxide (CO2) and NADH Glycolysis First stage of cellular respiration Cirtic Acid Cycle (TCA cycle) Final stage in the oxidation of glucose into carbon dioxide (CO2) Chemiosmosis The protein ATP synthase works like a water turbine in a dam MAT8aa5_2756
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Chemiosmosis The protein ATP synthase works like a water turbine in a dam Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Cirtic Acid Cycle (TCA cycle) For each molecule of glucose, this stage produces two (2) ATP, six (6) NADH, and two (2) FADH2 molecules Pyruvate Oxidation First stage of cellular respiration that occurs within the mitochondria organelles MAT8aa5_0d34
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Chemiosmosis Stage of cellular respiration that produces the most ATP Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Pyruvate Oxidation Takes pyruvate as input and produces acetyl-CoA Cirtic Acid Cycle (TCA cycle) Acetyl CoA serves as fuel for this stage of cellular respiration Glycolysis First stage of cellular respiration MAT8aa5_8e05
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Cirtic Acid Cycle (TCA cycle) Begins with the transfer of a two-carbon acetyl group to a four-carbon acceptor to form a six-carbon compound Chemiosmosis Uses the electrochemical gradient to produce substrate-level phosphorylation energy molecules Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Glycolysis First stage of cellular respiration Pyruvate Oxidation This stage is entirely carried out by a large enzyme complex called the pyruvate dehydrogenase complex MAT8aa5_bd9d
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Chemiosmosis Uses the electrochemical gradient to produce substrate-level phosphorylation energy molecules Cirtic Acid Cycle (TCA cycle) For each molecule of glucose, this stage produces two (2) ATP, six (6) NADH, and two (2) FADH2 molecules Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Pyruvate Oxidation Short stage that produces carbon dioxide (CO2) and NADH MAT8aa5_7e11
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Pyruvate Oxidation A stage that links glycolysis to the rest of cellular respiration Cirtic Acid Cycle (TCA cycle) Acetyl CoA serves as fuel for this stage of cellular respiration Chemiosmosis Uses the electrochemical gradient to produce substrate-level phosphorylation energy molecules Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons MAT8aa5_7f7f
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Chemiosmosis Uses the electrochemical gradient to produce substrate-level phosphorylation energy molecules Pyruvate Oxidation Pyruvate must enter the mitochondrial matrix for this stage to begin Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Cirtic Acid Cycle (TCA cycle) Acetyl CoA serves as fuel for this stage of cellular respiration Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons MAT8aa5_3816
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Cirtic Acid Cycle (TCA cycle) For each molecule of glucose, this stage produces two (2) ATP, six (6) NADH, and two (2) FADH2 molecules Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell Chemiosmosis The protein ATP synthase works like a water turbine in a dam Pyruvate Oxidation Takes pyruvate as input and produces acetyl-CoA MAT8aa5_e9b9
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Cirtic Acid Cycle (TCA cycle) Acetyl CoA serves as fuel for this stage of cellular respiration Glycolysis First stage of cellular respiration Pyruvate Oxidation Takes pyruvate as input and produces acetyl-CoA Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Chemiosmosis Uses the electrochemical gradient to produce substrate-level phosphorylation energy molecules MAT8aa5_6c3f
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Pyruvate Oxidation First stage of cellular respiration that occurs within the mitochondria organelles Cirtic Acid Cycle (TCA cycle) At the end this stage, the four-carbon oxaloacetate has been regenerated, and the stage repeats. Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell MAT8aa5_aa25
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Pyruvate Oxidation This stage is entirely carried out by a large enzyme complex called the pyruvate dehydrogenase complex Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Cirtic Acid Cycle (TCA cycle) Forms a GTP molecule which is equivalent to an ATP molecule MAT8aa5_2026
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Glycolysis First stage of cellular respiration Chemiosmosis The protein ATP synthase works like a water turbine in a dam Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Cirtic Acid Cycle (TCA cycle) Acetyl CoA serves as fuel for this stage of cellular respiration Pyruvate Oxidation For each molecule of glucose, this stage produces zero (0) ATP and two (2) NADH molecules MAT8aa5_7b61
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Pyruvate Oxidation A stage that links glycolysis to the rest of cellular respiration Cirtic Acid Cycle (TCA cycle) Acetyl CoA serves as fuel for this stage of cellular respiration Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Chemiosmosis The only stage of cellular respiration that does NOT involve electron carriers Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules MAT8aa5_a431
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP Pyruvate Oxidation A stage that links glycolysis to the rest of cellular respiration Cirtic Acid Cycle (TCA cycle) Final stage in the oxidation of glucose into carbon dioxide (CO2) Glycolysis First stage of cellular respiration Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient MAT8aa5_436a
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Pyruvate Oxidation Takes pyruvate as input and produces acetyl-CoA Cirtic Acid Cycle (TCA cycle) Final stage in the oxidation of glucose into carbon dioxide (CO2) Chemiosmosis The protein ATP synthase works like a water turbine in a dam Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules MAT8aa5_4567
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Pyruvate Oxidation First stage of cellular respiration that occurs within the mitochondria organelles Chemiosmosis The only stage of cellular respiration that does NOT involve electron carriers Cirtic Acid Cycle (TCA cycle) Final stage in the oxidation of glucose into carbon dioxide (CO2) Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Glycolysis First stage of cellular respiration MAT8aa5_ffc7
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Pyruvate Oxidation First stage of cellular respiration that occurs within the mitochondria organelles Cirtic Acid Cycle (TCA cycle) For each molecule of glucose, this stage produces two (2) ATP, six (6) NADH, and two (2) FADH2 molecules Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP MAT8aa5_9ae4
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP Cirtic Acid Cycle (TCA cycle) Final stage in the oxidation of glucose into carbon dioxide (CO2) Pyruvate Oxidation Pyruvate must enter the mitochondrial matrix for this stage to begin MAT8aa5_6f6b
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Cirtic Acid Cycle (TCA cycle) At the end this stage, the four-carbon oxaloacetate has been regenerated, and the stage repeats. Chemiosmosis Stage of cellular respiration that produces the most ATP Pyruvate Oxidation For each molecule of glucose, this stage produces zero (0) ATP and two (2) NADH molecules Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient MAT8aa5_01d7
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Chemiosmosis Uses the electrochemical gradient to produce substrate-level phosphorylation energy molecules Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Pyruvate Oxidation This stage is entirely carried out by a large enzyme complex called the pyruvate dehydrogenase complex Cirtic Acid Cycle (TCA cycle) Begins with the transfer of a two-carbon acetyl CoA to a four-carbon oxaloacetate to form a six-carbon citrate MAT8aa5_f6d4
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Cirtic Acid Cycle (TCA cycle) At the end this stage, the four-carbon oxaloacetate has been regenerated, and the stage repeats. Pyruvate Oxidation A stage that links glycolysis to the rest of cellular respiration Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Glycolysis First stage of cellular respiration MAT8aa5_907f
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Glycolysis First stage of cellular respiration Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP Cirtic Acid Cycle (TCA cycle) Begins with the transfer of a two-carbon acetyl group to a four-carbon acceptor to form a six-carbon compound Pyruvate Oxidation For each molecule of glucose, this stage produces zero (0) ATP and two (2) NADH molecules MAT8aa5_67cc
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Cirtic Acid Cycle (TCA cycle) For each molecule of glucose, this stage produces two (2) ATP, six (6) NADH, and two (2) FADH2 molecules Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell Pyruvate Oxidation For each molecule of glucose, this stage produces zero (0) ATP and two (2) NADH molecules Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP MAT8aa5_a088
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Chemiosmosis The only stage of cellular respiration that does NOT involve electron carriers Pyruvate Oxidation Pyruvate must enter the mitochondrial matrix for this stage to begin Cirtic Acid Cycle (TCA cycle) Begins with the transfer of a two-carbon acetyl CoA to a four-carbon oxaloacetate to form a six-carbon citrate Glycolysis First stage of cellular respiration MAT8aa5_adc5
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Chemiosmosis The only stage of cellular respiration that does NOT involve electron carriers Cirtic Acid Cycle (TCA cycle) Begins with the transfer of a two-carbon acetyl group to a four-carbon acceptor to form a six-carbon compound Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell Pyruvate Oxidation Pyruvate must enter the mitochondrial matrix for this stage to begin MAT8aa5_ce77
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Pyruvate Oxidation Short stage that produces carbon dioxide (CO2) and NADH Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP Cirtic Acid Cycle (TCA cycle) The only stage of cellular respiration that produces the electron acceptor FADH2 MAT8aa5_8cc6
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Pyruvate Oxidation Short stage that produces carbon dioxide (CO2) and NADH Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Chemiosmosis Stage of cellular respiration that produces the most ATP Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell Cirtic Acid Cycle (TCA cycle) Starts by joining a four carbon sugar and a two carbon sugar MAT8aa5_35a2
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP Cirtic Acid Cycle (TCA cycle) Acetyl CoA serves as fuel for this stage of cellular respiration Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Pyruvate Oxidation For each molecule of glucose, this stage produces zero (0) ATP and two (2) NADH molecules MAT8aa5_85bc
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Pyruvate Oxidation Pyruvate must enter the mitochondrial matrix for this stage to begin Chemiosmosis Stage of cellular respiration that produces the most ATP Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Cirtic Acid Cycle (TCA cycle) Begins with the transfer of a two-carbon acetyl CoA to a four-carbon oxaloacetate to form a six-carbon citrate Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell MAT8aa5_e22c
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Glycolysis First stage of cellular respiration Chemiosmosis Stage of cellular respiration that produces the most ATP Pyruvate Oxidation Short stage that produces carbon dioxide (CO2) and NADH Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Cirtic Acid Cycle (TCA cycle) Starts by joining a four carbon sugar and a two carbon sugar MAT8aa5_0064
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Cirtic Acid Cycle (TCA cycle) At the end this stage, the four-carbon oxaloacetate has been regenerated, and the stage repeats. Chemiosmosis Stage of cellular respiration that produces the most ATP Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons Glycolysis First stage of cellular respiration Pyruvate Oxidation First stage of cellular respiration that occurs within the mitochondria organelles MAT8aa5_23d4
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Cirtic Acid Cycle (TCA cycle) Acetyl CoA serves as fuel for this stage of cellular respiration Chemiosmosis Occurs in the membrane of the mitochondrial matrix to produce ATP Pyruvate Oxidation For each molecule of glucose, this stage produces zero (0) ATP and two (2) NADH molecules Glycolysis First stage of cellular respiration MAT8aa5_4428
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Pyruvate Oxidation First stage of cellular respiration that occurs within the mitochondria organelles Cirtic Acid Cycle (TCA cycle) At the end this stage, the four-carbon oxaloacetate has been regenerated, and the stage repeats. Chemiosmosis The only stage of cellular respiration that does NOT involve electron carriers Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell MAT8aa5_e2a9
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell Cirtic Acid Cycle (TCA cycle) At the end this stage, the four-carbon oxaloacetate has been regenerated, and the stage repeats. Chemiosmosis The protein ATP synthase works like a water turbine in a dam Electron Transport Chain (ETC) Stage of cellular respiration that extracts energy from the electron carriers NADH and FADH2 Pyruvate Oxidation For each molecule of glucose, this stage produces zero (0) ATP and two (2) NADH molecules MAT8aa5_124c
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Pyruvate Oxidation A stage that links glycolysis to the rest of cellular respiration Chemiosmosis The only stage of cellular respiration that does NOT involve electron carriers Cirtic Acid Cycle (TCA cycle) Starts by joining a four carbon sugar and a two carbon sugar Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell MAT8aa5_c42f
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Glycolysis The only stage of cellular respiration that takes place in the cytosol of the cell Chemiosmosis Stage of cellular respiration that produces the most ATP Cirtic Acid Cycle (TCA cycle) This stage was identified by Hans Krebs and William Johnson in 1937 and is sometimes called the "Krebs cycle" Electron Transport Chain (ETC) Occurs in the membrane of the mitochondrial matrix to produce the electrochemical gradient Pyruvate Oxidation This stage is entirely carried out by a large enzyme complex called the pyruvate dehydrogenase complex MAT8aa5_f51b
Match each of the following five stages in cellular respiration with their corresponding statements.
Note: Each choice will be used exactly once.
Cirtic Acid Cycle (TCA cycle) At the end this stage, the four-carbon oxaloacetate has been regenerated, and the stage repeats. Chemiosmosis The only stage of cellular respiration that does NOT involve electron carriers Pyruvate Oxidation A stage that links glycolysis to the rest of cellular respiration Glycolysis For each molecule of glucose, this stage produces two (2) ATP and two (2) NADH molecules Electron Transport Chain (ETC) Involves a series of protein complexes to extract redox energy from the high energy electrons