Campbell Biology: Concepts & Connections (8th Edition)
Campbell Biology: Concepts & Connections (8th Edition)
8th Edition
ISBN: 9780321885326
Author: Jane B. Reece, Martha R. Taylor, Eric J. Simon, Jean L. Dickey, Kelly A. Hogan
Publisher: PEARSON
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Chapter 6, Problem 6TYK

The poison cyanide binds to an electron carrier within the electron transport chain and blocks the movement of electrons. When this happens, glycolysis and the citric acid cycle soon grind to a halt as well. Why do you think these other two stages of cellular respiration stop? (Explain your answer.)

a. They run out of ATP.

b. Unused O2 interferes with cellular respiration.

c. They run out of NAD+ and FAD.

d. Electrons are no longer available.

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Which of the following statements about the generation of ATP in the electron transport chain is correct? a. The generation of ATP from ADP coupled to electron transfer occurs by substrate level phosphorylation as in glycolysis.   b. ATP synthase generation of ATP involves a rotating structure inside the inner mitochondrial membrane.   c. ATP synthase generation of ATP involves a rotating structure outside the inner mitochondrial membrane.   d. Electron transport generates a proton gradient across the outer mitochondrial membrane.
Which of the following statements concerning the location of the metabolic pathways is correct?    a.   All reactions of the glycolysis take place in the mitochondria.   b.   All reactions of the TCA cycle take place in the mitochondria.   c.   Some reactions of the TCA cycle take place in the cytosol, and some in mitochondria.   d.   Some reactions of the glycolysis take place in the cytosol, and some in mitochondria.
Place the following steps of cellular respiration in the correct order by numbering them from 1 to 4. a. The Krebs cycle produces the energy carriers NADH, FADH2, and ATP. b. If oxygen levels are adequate, pyruvate is transported into the mitochondrion. If oxygen levels are very low, fermentation proceeds. c. Glucose is broken down to produce ATP and NADH. d. An electron transport chain produces ATP from ADP.
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