EBK GENERAL, ORGANIC, AND BIOLOGICAL CH
7th Edition
ISBN: 8220100853180
Author: STOKER
Publisher: CENGAGE L
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Chapter 23.7, Problem 3QQ
Interpretation Introduction
Interpretation: To identify the pair of the product of the citric acid cycle.
Concept introduction: Citric acid cycle is the third stage of the biochemical energy production process. This stage is included in the common
In the citric acid cycle, the acetyl unit produced in the second stage of the biochemical energy production process is oxidized. An overview of the citric acid cycle is as follows:
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Which of the following is the third step of Citric Acid Cycle?
Select one:
a.
Succinyl-CoA becomes Succinate and forms one ATP molecule and Coenzyme A-SH
b.
Pyruvate is decarboxylated to become acetyl-CoA producing NADH and Carbon dioxide
c.
Isocitrate and then decarboxylated and oxidized to produce alpha-ketoglutarate, Carbon dioxide and NADH
d.
alpha-ketoglutarate is oxidized and decarboxylated to produce Succinyl-CoA, Carbon dioxide and NADH
e.
Succinate is oxidized to become fumarate forming FADH2
f.
Oxaloacetate combines with the acetyl from acetyl-CoA to produce Citric acid(citrate)
g.
Citrate is rearranged to become Isocitrate
h.
Malate is oxidized to become oxaloacetate forming NADH
i.
Fumarate is combined with water to become Malate
Which of the following is the second step of Citric Acid Cycle?
Select one:
a.
Isocitrate and then decarboxylated and oxidized to produce alpha-ketoglutarate, Carbon dioxide and NADH
b.
Succinyl-CoA becomes Succinate and forms one ATP molecule and Coenzyme A-SH
c.
alpha-ketoglutarate is oxidized and decarboxylated to produce Succinyl-CoA, Carbon dioxide and NADH
d.
Malate is oxidized to become oxaloacetate forming NADH
e.
Fumarate is combined with water to become Malate
f.
Citrate is rearranged to become Isocitrate
g.
Pyruvate is decarboxylated to become acetyl-CoA producing NADH and Carbon dioxide
h.
Oxaloacetate combines with the acetyl from acetyl-CoA to produce Citric acid(citrate)
i.
Succinate is oxidized to become fumarate forming FADH2
Which of the following is the sixth step of Citric Acid Cycle?
Select one:
a.
Succinate is oxidized to become fumarate forming FADH2
b.
alpha-ketoglutarate is oxidized and decarboxylated to produce Succinyl-CoA, Carbon dioxide and NADH
c.
Isocitrate and then decarboxylated and oxidized to produce alpha-ketoglutarate, Carbon dioxide and NADH
d.
Oxaloacetate combines with the acetyl from acetyl-CoA to produce Citric acid(citrate)
e.
Malate is oxidized to become oxaloacetate forming NADH
f.
Fumarate is combined with water to become Malate
g.
Citrate is rearranged to become Isocitrate
h.
Pyruvate is decarboxylated to become acetyl-CoA producing NADH and Carbon dioxide
i.
Succinyl-CoA becomes Succinate and forms one ATP molecule and Coenzyme A-SH
Chapter 23 Solutions
EBK GENERAL, ORGANIC, AND BIOLOGICAL CH
Ch. 23.1 - Prob. 1QQCh. 23.1 - Prob. 2QQCh. 23.2 - Which of the following is not found within the...Ch. 23.2 - Which of the following is not an organelle? a....Ch. 23.2 - Prob. 3QQCh. 23.2 - Prob. 4QQCh. 23.3 - Which of the following statements concerning...Ch. 23.3 - Prob. 2QQCh. 23.3 - Which of the following statements concerning...Ch. 23.3 - Which of the following statements concerning...
Ch. 23.3 - Which of the following statements concerning...Ch. 23.4 - Prob. 1QQCh. 23.4 - Prob. 2QQCh. 23.5 - Prob. 1QQCh. 23.5 - Prob. 2QQCh. 23.5 - Prob. 3QQCh. 23.6 - Which of the following occurs in the second stage...Ch. 23.6 - Which of the following stages in the biochemical...Ch. 23.6 - Prob. 3QQCh. 23.7 - Prob. 1QQCh. 23.7 - Prob. 2QQCh. 23.7 - Prob. 3QQCh. 23.7 - How many NADH and FADH2 molecules are produced,...Ch. 23.7 - Which of the following citric acid cycle...Ch. 23.7 - In which of the following listings of citric acid...Ch. 23.8 - Which of the following is a fuel for the electron...Ch. 23.8 - Prob. 2QQCh. 23.8 - What is the substrate that initially interacts...Ch. 23.8 - The number of fixed enzyme sites in the electron...Ch. 23.8 - In which of the following listings of electron...Ch. 23.8 - Prob. 6QQCh. 23.9 - How many of the four enzyme complexes in the...Ch. 23.9 - Prob. 2QQCh. 23.9 - Prob. 3QQCh. 23.10 - Prob. 1QQCh. 23.10 - Prob. 2QQCh. 23.11 - Prob. 1QQCh. 23.11 - Prob. 2QQCh. 23.11 - Prob. 3QQCh. 23.12 - Prob. 1QQCh. 23.12 - Prob. 2QQCh. 23 - Classify anabolism and catabolism as synthetic or...Ch. 23 - Classify anabolism and catabolism as...Ch. 23 - What is a metabolic pathway?Ch. 23 - Prob. 23.4EPCh. 23 - Classify each of the following processes as...Ch. 23 - Classify each of the following processes as...Ch. 23 - Prob. 23.7EPCh. 23 - Prob. 23.8EPCh. 23 - Prob. 23.9EPCh. 23 - Indicate whether each of the following statements...Ch. 23 - Prob. 23.11EPCh. 23 - Prob. 23.12EPCh. 23 - Prob. 23.13EPCh. 23 - Prob. 23.14EPCh. 23 - Specify, by name and by number present, the...Ch. 23 - Prob. 23.16EPCh. 23 - Prob. 23.17EPCh. 23 - Prob. 23.18EPCh. 23 - Prob. 23.19EPCh. 23 - Prob. 23.20EPCh. 23 - Prob. 23.21EPCh. 23 - Prob. 23.22EPCh. 23 - Write a generalized chemical equation, containing...Ch. 23 - Prob. 23.24EPCh. 23 - Prob. 23.25EPCh. 23 - Prob. 23.26EPCh. 23 - Draw each of the following types of block diagrams...Ch. 23 - Prob. 23.28EPCh. 23 - What is the name of the B vitamin present in each...Ch. 23 - Prob. 23.30EPCh. 23 - Prob. 23.31EPCh. 23 - Prob. 23.32EPCh. 23 - Prob. 23.33EPCh. 23 - Prob. 23.34EPCh. 23 - Prob. 23.35EPCh. 23 - Prob. 23.36EPCh. 23 - Prob. 23.37EPCh. 23 - Prob. 23.38EPCh. 23 - Prob. 23.39EPCh. 23 - Prob. 23.40EPCh. 23 - Prob. 23.41EPCh. 23 - Prob. 23.42EPCh. 23 - Prob. 23.43EPCh. 23 - Prob. 23.44EPCh. 23 - Prob. 23.45EPCh. 23 - Prob. 23.46EPCh. 23 - Prob. 23.47EPCh. 23 - Prob. 23.48EPCh. 23 - Prob. 23.49EPCh. 23 - Prob. 23.50EPCh. 23 - Prob. 23.51EPCh. 23 - Prob. 23.52EPCh. 23 - Prob. 23.53EPCh. 23 - Prob. 23.54EPCh. 23 - Prob. 23.55EPCh. 23 - Prob. 23.56EPCh. 23 - Prob. 23.57EPCh. 23 - Prob. 23.58EPCh. 23 - List, by name, the four general stages of the...Ch. 23 - Prob. 23.60EPCh. 23 - Prob. 23.61EPCh. 23 - Prob. 23.62EPCh. 23 - Prob. 23.63EPCh. 23 - Prob. 23.64EPCh. 23 - Prob. 23.65EPCh. 23 - Prob. 23.66EPCh. 23 - Prob. 23.67EPCh. 23 - Prob. 23.68EPCh. 23 - Prob. 23.69EPCh. 23 - Prob. 23.70EPCh. 23 - Prob. 23.71EPCh. 23 - Prob. 23.72EPCh. 23 - Prob. 23.73EPCh. 23 - Prob. 23.74EPCh. 23 - Prob. 23.75EPCh. 23 - Prob. 23.76EPCh. 23 - Prob. 23.77EPCh. 23 - Prob. 23.78EPCh. 23 - Prob. 23.79EPCh. 23 - Prob. 23.80EPCh. 23 - Prob. 23.81EPCh. 23 - Prob. 23.82EPCh. 23 - Prob. 23.83EPCh. 23 - Prob. 23.84EPCh. 23 - Prob. 23.85EPCh. 23 - Prob. 23.86EPCh. 23 - Prob. 23.87EPCh. 23 - Prob. 23.88EPCh. 23 - Indicate whether each of the following changes...Ch. 23 - Prob. 23.90EPCh. 23 - Prob. 23.91EPCh. 23 - Prob. 23.92EPCh. 23 - Which electron carrier shuttles electrons between...Ch. 23 - Prob. 23.94EPCh. 23 - Prob. 23.95EPCh. 23 - Prob. 23.96EPCh. 23 - Prob. 23.97EPCh. 23 - Prob. 23.98EPCh. 23 - Prob. 23.99EPCh. 23 - Prob. 23.100EPCh. 23 - Put the following substances in the correct order...Ch. 23 - Prob. 23.102EPCh. 23 - Prob. 23.103EPCh. 23 - Prob. 23.104EPCh. 23 - Prob. 23.105EPCh. 23 - Prob. 23.106EPCh. 23 - Prob. 23.107EPCh. 23 - Prob. 23.108EPCh. 23 - Prob. 23.109EPCh. 23 - Prob. 23.110EPCh. 23 - How many protons cross the inner mitochondrial...Ch. 23 - How many protons cross the inner mitochondrial...Ch. 23 - Prob. 23.113EPCh. 23 - Prob. 23.114EPCh. 23 - Prob. 23.115EPCh. 23 - Prob. 23.116EPCh. 23 - Prob. 23.117EPCh. 23 - Prob. 23.118EPCh. 23 - Prob. 23.119EPCh. 23 - Prob. 23.120EPCh. 23 - Prob. 23.121EPCh. 23 - Prob. 23.122EPCh. 23 - Prob. 23.123EPCh. 23 - Prob. 23.124EPCh. 23 - Prob. 23.125EPCh. 23 - Prob. 23.126EPCh. 23 - Prob. 23.127EPCh. 23 - Prob. 23.128EPCh. 23 - Indicate whether or not each of the following B...Ch. 23 - Prob. 23.130EPCh. 23 - Prob. 23.131EPCh. 23 - Prob. 23.132EP
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- Which of the following citric acid cycle intermediates is decarboxylated during the operation of the cycle? A. More than one correct response B. No correct response C. Isocitrate D. Succinate E. Oxaloacetatearrow_forwardidentify the reactions of the citric acid cycle that provide reducing power for the electron-transport chain a. conversion of succinyl-CoA to succinate b. conversion of fumarate to malate c. conversion of succinate to fumarate d. conversion of malate to oxaloacetatearrow_forwardWhich citric acid cycle intermediate can move from the mitochondria into the cytoplasm to become the activator of fatty acid synthesis? Select one: a. Succinyl-CoA b. Fumarate c. Citrate d. Malatearrow_forward
- Which of the following can undergo metabolic conversion to acetyl CoA and enter the citric acid cycle? A. Fatty acids B. All of the choices are correct. C. Protein D. Glucosearrow_forwardWhich of the following statements is true about the citric acid cycle a. The Citric Acid Cycle is an 8-step cycle that produces the most electron carrier molecules throughout the process of cellular respiration. b. In Citric Acid Cycle, both the acetyl group and coenzyme A of Acetyl CoA are combined to oxaloacetate. c. In Citric Acid Cycle, glucose is only partially broken down and there are still remnants of glucose after this process. d. The ATP produced during this process is via oxidative phosphorylationarrow_forwardWhich of the following is the chemical end product of fatty-acids metabolized in the beta-oxidation pathway? Select one: a. Beta-carotine b. Free-radicals c. Lactic acid d. Acetyl-CoA e. Pyruvatearrow_forward
- The enzymes of the citric acid cycle are located in a. Cytoplasm b. Endoplasmic reticulum c. Mitochondrial matrix d. Nucleusarrow_forwardWhich of the following coenzymes does not get restored to it's original form within the PDH complex once pyruvate gets converted to acetyl CoA a. NAD+ b. TPP c. Lipolic Acid d. FADarrow_forwardBefore a fatty acid can undergo β-oxidation, it must be activated and then shuttled across the inner mitochondrial membrane. The activating agent and shuttle molecule are, respectively: A. CoA and carnitine B. CoA and citrate C. acetyl CoA and carnitine D. acetyl CoA and citratearrow_forward
- Explain why the hydrolysis of the following compounds releases energy. A. phosphoenol pyruvate B. 1,3-diphosphoglycerate C. succinyl CoAarrow_forwardThe citric acid cycle occurs in the : a. Cytosol b. Mitochondrial matrix c. Inner membrane of the mitochondria d. Nucleusarrow_forwardWhich of the following cofactors is NOT used by the pyruvate dehydrogenase complex? a. NAD+ b. FAD c. tetrahydrofolate d. coenzyme Aarrow_forward
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