Deck 23: Metabolism and Energy Production
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Deck 23: Metabolism and Energy Production
1
The citric acid cycle is used in the oxidation of
A) glucose only.
B) glucose and fatty acids only.
C) fatty acids only.
D) glucose, fatty acids, and proteins.
E) proteins only.
A) glucose only.
B) glucose and fatty acids only.
C) fatty acids only.
D) glucose, fatty acids, and proteins.
E) proteins only.
glucose, fatty acids, and proteins.
2
Which of the following compounds in the citric acid cycle undergoes oxidative decarboxylation?
A) citrate
B) isocitrate
C) succinate
D) fumarate
E) succinyl CoA
A) citrate
B) isocitrate
C) succinate
D) fumarate
E) succinyl CoA
isocitrate
3
FAD is a coenzyme which usually participates in
A) oxidation of alcohols to aldehydes.
B) formation of carbon-carbon double bonds.
C) decarboxylation reactions.
D) phosphorylation reactions.
E) β-oxidation reactions.
A) oxidation of alcohols to aldehydes.
B) formation of carbon-carbon double bonds.
C) decarboxylation reactions.
D) phosphorylation reactions.
E) β-oxidation reactions.
formation of carbon-carbon double bonds.
4
Which coenzyme is the electron acceptor in the following reaction? 
A) FAD
B) NAD+
C) FMN
D) NADH
E) FADH₂

A) FAD
B) NAD+
C) FMN
D) NADH
E) FADH₂
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5
The transformation of citrate to isocitrate in the citric acid cycle requires two __________ reactions.
A) oxidation
B) reduction
C) hydrolysis
D) decarboxylation
E) dehydration-hydration
A) oxidation
B) reduction
C) hydrolysis
D) decarboxylation
E) dehydration-hydration
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6
Another name for the citric acid cycle is
A) the Krebs cycle.
B) gluconeogenesis.
C) glucose hydrolysis.
D) oxidative phosphorylation.
E) the chemiosmotic pump.
A) the Krebs cycle.
B) gluconeogenesis.
C) glucose hydrolysis.
D) oxidative phosphorylation.
E) the chemiosmotic pump.
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7
Most of the energy released in the citric acid cycle is used to produce
A) glucose.
B) acetyl CoA.
C) NADH and FADH₂.
D) carbon dioxide and water.
E) citric acid.
A) glucose.
B) acetyl CoA.
C) NADH and FADH₂.
D) carbon dioxide and water.
E) citric acid.
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8
In the first reaction of the citric acid cycle
A) glucose becomes pyruvate.
B) ATP is produced.
C) NADH is produced.
D) acetyl CoA reacts with oxaloacetate to give citrate.
E) pyruvate becomes CO₂ and H₂O.
A) glucose becomes pyruvate.
B) ATP is produced.
C) NADH is produced.
D) acetyl CoA reacts with oxaloacetate to give citrate.
E) pyruvate becomes CO₂ and H₂O.
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9
During the first reaction in the citric acid cycle,
A) free CoA is released.
B) acetyl CoA is made.
C) a decarboxylation occurs.
D) a decomposition occurs.
E) ATP is synthesized.
A) free CoA is released.
B) acetyl CoA is made.
C) a decarboxylation occurs.
D) a decomposition occurs.
E) ATP is synthesized.
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10
NAD+ participates in reactions that produce
A) a CH₂ group.
B) a C=O bond.
C) phosphorylation.
D) ADP from ATP.
E) a C-C bond.
A) a CH₂ group.
B) a C=O bond.
C) phosphorylation.
D) ADP from ATP.
E) a C-C bond.
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11
The citric acid cycle operates only under aerobic conditions because
A) oxygen is a reactant in the citric acid cycle.
B) oxygen is a product of the citric acid cycle.
C) CO₂ is a product of the citric acid cycle.
D) the NADH and FADH₂ produced by the citric acid cycle can only be reoxidized by the electron transport chain.
E) the NAD+ and FAD produced by the citric acid cycle can only be reduced by the electron transport chain.
A) oxygen is a reactant in the citric acid cycle.
B) oxygen is a product of the citric acid cycle.
C) CO₂ is a product of the citric acid cycle.
D) the NADH and FADH₂ produced by the citric acid cycle can only be reoxidized by the electron transport chain.
E) the NAD+ and FAD produced by the citric acid cycle can only be reduced by the electron transport chain.
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12
Which of the following is the net reaction for one turn of the citric acid cycle?
A) Acetyl-S-CoA + 3 NAD+ + FAD + GDP + Pi + 2H₂O → 2 CO₂ + 3 NADH + 3 H+ + FADH₂ + HS-CoA + GTP
B) Pyruvate + 3 NAD+ + FAD + GDP + Pi + 2H₂O → 3 CO₂ + 3 NADH + 3 H+ + FADH₂ + GTP
C) Acetyl-S-CoA + NAD+ + FAD + GDP + Pi → 2 CO₂ + NADH + H+ + FADH₂ + HS-CoA + GTP
D) Glucose + 2 NAD+ + 2GDP + 2 Pi + 2H₂O → 2Pyruvate + 2 NADH + 2 H+ + GTP
E) Glucose + 2GDP + 2Pi → 2Lactate + 2GTP
A) Acetyl-S-CoA + 3 NAD+ + FAD + GDP + Pi + 2H₂O → 2 CO₂ + 3 NADH + 3 H+ + FADH₂ + HS-CoA + GTP
B) Pyruvate + 3 NAD+ + FAD + GDP + Pi + 2H₂O → 3 CO₂ + 3 NADH + 3 H+ + FADH₂ + GTP
C) Acetyl-S-CoA + NAD+ + FAD + GDP + Pi → 2 CO₂ + NADH + H+ + FADH₂ + HS-CoA + GTP
D) Glucose + 2 NAD+ + 2GDP + 2 Pi + 2H₂O → 2Pyruvate + 2 NADH + 2 H+ + GTP
E) Glucose + 2GDP + 2Pi → 2Lactate + 2GTP
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13
Which coenzyme is the electron acceptor in the following reaction? 
A) FAD
B) NAD+
C) FMN
D) NADH
E) FADH₂

A) FAD
B) NAD+
C) FMN
D) NADH
E) FADH₂
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14
What electron acceptor(s) is(are) used in the citric acid cycle?
A) FAD only
B) NAD+ only
C) NADH + FADH₂ + CoASH
D) FMN
E) NAD+ + FAD
A) FAD only
B) NAD+ only
C) NADH + FADH₂ + CoASH
D) FMN
E) NAD+ + FAD
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15
Which of the three major stages of metabolism includes the citric acid cycle?
A) Stage one
B) Stage two
C) Stage three
A) Stage one
B) Stage two
C) Stage three
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16
Another name for the citric acid cycle is
A) electron transport.
B) glycolysis.
C) the tricarboxylic acid (TCA) cycle.
D) glucolysis.
E) the transamination pathway.
A) electron transport.
B) glycolysis.
C) the tricarboxylic acid (TCA) cycle.
D) glucolysis.
E) the transamination pathway.
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17
In order to enter the citric acid cycle, pyruvate is first converted to
A) ate.
B) acetaldehyde.
C) citrate.
D) acetyl CoA.
E) ethanol.
A) ate.
B) acetaldehyde.
C) citrate.
D) acetyl CoA.
E) ethanol.
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18
The citric acid cycle takes place in the
A) mitochondria.
B) cytosol.
C) cytoplasm.
D) Golgi apparatus.
E) endoplasmic reticulum.
A) mitochondria.
B) cytosol.
C) cytoplasm.
D) Golgi apparatus.
E) endoplasmic reticulum.
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19
When oxygen is in plentiful supply in the cell, pyruvate is converted to
A) CoA.
B) acetyl CoA.
C) glucose.
D) lactate.
E) fructose.
A) CoA.
B) acetyl CoA.
C) glucose.
D) lactate.
E) fructose.
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20
When combined with electron transport, one turn of the citric acid cycle produces __________ ATP.
A) 24
B) 12
C) 11
D) 14
E) 2
A) 24
B) 12
C) 11
D) 14
E) 2
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21
The citric acid cycle step that removes the first CO₂ molecule is a(n)
A) oxidative decarboxylation.
B) reduction.
C) carbonylation.
D) hydrolysis.
E) combination.
A) oxidative decarboxylation.
B) reduction.
C) carbonylation.
D) hydrolysis.
E) combination.
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22
Under anaerobic conditions, there is a net production of __________ ATP during glycolysis.
A) zero
B) two
C) four
D) six
E) eight
A) zero
B) two
C) four
D) six
E) eight
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23
In the chemiosmotic model, protons circulate through a protein complex called
A) iron-sulfur clusters.
B) FMA.
C) CoA.
D) CoQ.
E) ATP synthase.
A) iron-sulfur clusters.
B) FMA.
C) CoA.
D) CoQ.
E) ATP synthase.
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24
In electron transport, the oxidized product from the reaction of FMN + NADH + H+ is
A) CoQ.
B) FMNH₂.
C) FADH.
D) FAD.
E) NAD+.
A) CoQ.
B) FMNH₂.
C) FADH.
D) FAD.
E) NAD+.
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25
Step 5 of the citric acid cycle is the hydrolysis of succinyl CoA. In this reaction
A) the energy released is used to make GTP.
B) the energy released is used to make ATP.
C) carbon dioxide is released.
D) α-ketoglutarate is released.
E) the enzyme aconitase is needed.
A) the energy released is used to make GTP.
B) the energy released is used to make ATP.
C) carbon dioxide is released.
D) α-ketoglutarate is released.
E) the enzyme aconitase is needed.
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26
In the chemiosmotic model of oxidative phosphorylation, ATP is synthesized as
A) OH- flows through ATP synthase.
B) electrons flow through ATP synthase.
C) Ca2+ flows through ATP synthase.
D) H+ flows through ATP synthase.
E) Na+ flows through ATP synthase.
A) OH- flows through ATP synthase.
B) electrons flow through ATP synthase.
C) Ca2+ flows through ATP synthase.
D) H+ flows through ATP synthase.
E) Na+ flows through ATP synthase.
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27
The electron carrier __________ provides two ATP via electron transport.
A) FADH₂
B) NADH
C) NADPH
D) CoASH
E) FNMH₂
A) FADH₂
B) NADH
C) NADPH
D) CoASH
E) FNMH₂
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28
In electron transport, the three protein complexes (I, III, and IV)
A) act as proton pumps, which generate a proton gradient.
B) transfer electrons from NAD+ to O₂.
C) transfer electrons from FAD to O₂.
D) act as electron pumps, which generate an electron gradient.
E) act as Ca2+ pumps, which generate a Ca2+ gradient.
A) act as proton pumps, which generate a proton gradient.
B) transfer electrons from NAD+ to O₂.
C) transfer electrons from FAD to O₂.
D) act as electron pumps, which generate an electron gradient.
E) act as Ca2+ pumps, which generate a Ca2+ gradient.
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29
In the dehydration of succinate to fumarate in the citric acid cycle, the coenzyme used is
A) CoA.
B) acetyl CoA.
C) NAD+.
D) NADH.
E) FAD.
A) CoA.
B) acetyl CoA.
C) NAD+.
D) NADH.
E) FAD.
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30
The GTP formed in step 5 of the citric acid cycle is used to make
A) carbon dioxide.
B) oxygen.
C) water.
D) CoA.
E) ATP.
A) carbon dioxide.
B) oxygen.
C) water.
D) CoA.
E) ATP.
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31
In the hydrolysis of succinyl CoA in step 5 of the citric acid cycle, CoA is released as
A) CoA-SH.
B) CoA-OH.
C) CoA-O-.
D) CoA- S-
E) CoA- COO-.
A) CoA-SH.
B) CoA-OH.
C) CoA-O-.
D) CoA- S-
E) CoA- COO-.
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32
The last step in the citric acid cycle converts malate to
A) citrate.
B) isocitrate.
C) succinate.
D) fumarate.
E) oxaloacetate.
A) citrate.
B) isocitrate.
C) succinate.
D) fumarate.
E) oxaloacetate.
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33
The process which requires oxygen to produce carbon dioxide and water is called
A) fermentation.
B) reduction.
C) decomposition.
D) oxidation.
E) respiration.
A) fermentation.
B) reduction.
C) decomposition.
D) oxidation.
E) respiration.
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34
Cyanide ion and carbon monoxide inhibit
A) cytochrome c oxidase.
B) ATP production.
C) antibiotic activity.
D) CoQ formation.
E) CoA formation.
A) cytochrome c oxidase.
B) ATP production.
C) antibiotic activity.
D) CoQ formation.
E) CoA formation.
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35
The components of the electron transport chain do NOT include
A) oxygen (O₂).
B) cytochromes.
C) FMN.
D) CoQ.
E) acetyl CoA.
A) oxygen (O₂).
B) cytochromes.
C) FMN.
D) CoQ.
E) acetyl CoA.
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36
In electron transport, the synthesis of ATP from ADP + Pi is called
A) glycolysis.
B) fermentation.
C) oxidative phosphorylation.
D) isomerization.
E) hydrolysis.
A) glycolysis.
B) fermentation.
C) oxidative phosphorylation.
D) isomerization.
E) hydrolysis.
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37
One method of regulation of the citric acid cycle is
A) allosteric control.
B) osmosis.
C) temperature control.
D) carbon dioxide production.
E) water concentration.
A) allosteric control.
B) osmosis.
C) temperature control.
D) carbon dioxide production.
E) water concentration.
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38
In the third major step of the citric acid cycle, NAD+ is converted to
A) NAS-.
B) NAD2+.
C) NADH₂
D) NAD.
E) NADH.
A) NAS-.
B) NAD2+.
C) NADH₂
D) NAD.
E) NADH.
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39
In step 7 of the citric acid cycle, fumarate is converted to malate by a __________ reaction.
A) hydrolysis
B) dehydrogenation
C) hydrogenation
D) hydration
E) dehydration
A) hydrolysis
B) dehydrogenation
C) hydrogenation
D) hydration
E) dehydration
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40
Which of the following metabolic pathways can occur in the absence of oxygen?
A) electron transport
B) oxidative phosphorylation
C) citric acid cycle
D) glycolysis
E) β-oxidation
A) electron transport
B) oxidative phosphorylation
C) citric acid cycle
D) glycolysis
E) β-oxidation
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41
In this figure depicting the Stages of Metabolism taken from your text, identify the metabolic substance numbered. 
substance 8

substance 8
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42
Overall, one turn of the citric acid cycle produces
A) three CO₂ molecules.
B) three NADH molecules.
C) two FADH₂ molecules.
D) 6 ATP.
E) 2 GTP.
A) three CO₂ molecules.
B) three NADH molecules.
C) two FADH₂ molecules.
D) 6 ATP.
E) 2 GTP.
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43
In this figure depicting the Stages of Metabolism taken from your text, identify the metabolic substance numbered. 
substance 6

substance 6
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44
In this figure depicting the Stages of Metabolism taken from your text, identify the metabolic substance numbered. 
substance 1

substance 1
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45
Which is the best choice for the box labeled "Answer" in the illustration below? 
A) oxidized carrier B
B) carbon dioxide
C) OH-
D) reduced carrier BH₂
E) energy

A) oxidized carrier B
B) carbon dioxide
C) OH-
D) reduced carrier BH₂
E) energy
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46
In this figure depicting the Stages of Metabolism taken from your text, identify the metabolic substance numbered. 
substance 7

substance 7
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47
In this figure depicting the Stages of Metabolism taken from your text, identify the metabolic substance numbered. 
substance 2

substance 2
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48
What is the correct coefficient for ATP in the complete combustion of glucose? C6H12O6 + 6O₂ → 6CO₂ + _____ ATP + 6H₂O
A) 6
B) 12
C) 18
D) 24
E) 36
A) 6
B) 12
C) 18
D) 24
E) 36
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49
The energy released during electron transport is used to produce
A) glucose.
B) citric acid.
C) carbon dioxide.
D) ATP.
E) NADH.
A) glucose.
B) citric acid.
C) carbon dioxide.
D) ATP.
E) NADH.
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50
In glycolysis, glucose produces 2 pyruvate ions and a total of __________ ATP molecules.
A) 2
B) 4
C) 6
D) 8
E) 12
A) 2
B) 4
C) 6
D) 8
E) 12
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51
One example of an electron carrier in the respiratory chain is
A) ATP.
B) GTP.
C) coenzyme Q.
D) citrate.
E) water.
A) ATP.
B) GTP.
C) coenzyme Q.
D) citrate.
E) water.
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52
Electron transport is also called
A) the citric acid cycle.
B) β-oxidation.
C) transamination.
D) the respiratory chain.
E) fermentation.
A) the citric acid cycle.
B) β-oxidation.
C) transamination.
D) the respiratory chain.
E) fermentation.
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53
The complete oxidation of glucose produces __________ ATP molecules.
A) 2
B) 8
C) 12
D) 24
E) 36
A) 2
B) 8
C) 12
D) 24
E) 36
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54
In stage three of metabolism, the overall result is to release
A) glucose and water.
B) lactate and acetyl CoA.
C) lactate and glucose.
D) glycogen and water.
E) carbon dioxide and energy.
A) glucose and water.
B) lactate and acetyl CoA.
C) lactate and glucose.
D) glycogen and water.
E) carbon dioxide and energy.
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55
In this figure depicting the Stages of Metabolism taken from your text, identify the metabolic substance numbered. 
substance 5

substance 5
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56
In this figure depicting the Stages of Metabolism taken from your text, identify the metabolic substance numbered. 
substance 4

substance 4
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57
In this figure depicting the Stages of Metabolism taken from your text, identify the metabolic substance numbered. 
substance 3

substance 3
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58
Which of the following is NOT a possible product of pyruvate under anaerobic conditions?
A) lactate
B) acetaldehyde
C) fumarate
D) ethanol
E) CO₂
A) lactate
B) acetaldehyde
C) fumarate
D) ethanol
E) CO₂
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59
In electron transport, NADH and FADH₂ are used to provide
A) oxygen.
B) electrons and hydrogen ions.
C) carbon atoms.
D) water and carbon dioxide.
E) thiol groups.
A) oxygen.
B) electrons and hydrogen ions.
C) carbon atoms.
D) water and carbon dioxide.
E) thiol groups.
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60
The compounds in the respiratory chain that remove hydrogen ions and electrons from NADH are classified as
A) oxidative transporters.
B) osmotic carriers.
C) electron carriers.
D) phosphorylators.
E) citrates.
A) oxidative transporters.
B) osmotic carriers.
C) electron carriers.
D) phosphorylators.
E) citrates.
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61
The conversion of ATP to ADP and inorganic phosphate produces 7.3 kcal/mole of energy.
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62
Indicate the amount of ATP produced when each of the following reactions occurs.
complete oxidation of glucose
A)6 ATP
B)2 ATP
C)36 ATP
D)12 ATP
E)3 ATP
complete oxidation of glucose
A)6 ATP
B)2 ATP
C)36 ATP
D)12 ATP
E)3 ATP
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63
In this figure, depicting part 1 of the Citric Acid Cycle, taken from your text, identify the substances numbered. 
substance 13

substance 13
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64
In this figure, depicting part 1 of the Citric Acid Cycle, taken from your text, identify the substances numbered. 
substance 15

substance 15
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65
NAD+ acts as a hydrogen acceptor in metabolic reactions.
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66
In this figure, depicting part 1 of the Citric Acid Cycle, taken from your text, identify the substances numbered. 
substance 17

substance 17
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67
In reaction 4 of the citric acid cycle, α-ketoglutarase , a five-carbon keto acid, is decarboxylated.
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68
12 ATP are produced when glucose is oxidized to CO₂ and H₂O.
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69
Indicate the amount of ATP produced when each of the following reactions occurs.
glucose → 2 pyruvate under aerobic conditions
A)6 ATP
B)2 ATP
C)36 ATP
D)12 ATP
E)3 ATP
glucose → 2 pyruvate under aerobic conditions
A)6 ATP
B)2 ATP
C)36 ATP
D)12 ATP
E)3 ATP
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70
In this figure, depicting part 1 of the Citric Acid Cycle, taken from your text, identify the substances numbered. 
substance 18

substance 18
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71
In this figure depicting the Stages of Metabolism taken from your text, identify the metabolic substance numbered. 
process 10

process 10
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72
Indicate the amount of ATP produced when each of the following reactions occurs.
Acetyl CoA → 2CO₂
A)6 ATP
B)2 ATP
C)36 ATP
D)12 ATP
E)3 ATP
Acetyl CoA → 2CO₂
A)6 ATP
B)2 ATP
C)36 ATP
D)12 ATP
E)3 ATP
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73
In this figure, depicting part 1 of the Citric Acid Cycle, taken from your text, identify the substances numbered. 
substance 14

substance 14
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74
In this figure depicting the Stages of Metabolism taken from your text, identify the metabolic substance numbered. 
process 11

process 11
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75
In this figure depicting the Stages of Metabolism taken from your text, identify the metabolic substance numbered. 
process 9

process 9
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76
In this figure, depicting part 1 of the Citric Acid Cycle, taken from your text, identify the substances numbered. 
substance 16

substance 16
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77
In this figure, depicting part 1 of the Citric Acid Cycle, taken from your text, identify the substances numbered. 
substance 12

substance 12
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78
FADH₂ is the oxidized form of FAD.
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79
Cyt c is a component of complex IV.
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80
The energy levels of complexes decrease as electron transport progresses.
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