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verified
Multiple Choice
A) integral membrane
B) peripheral membrane
C) lipid-anchored membrane
D) water-soluble
E) Both A and C
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verified
True/False
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verified
True/False
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verified
True/False
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verified
True/False
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verified
True/False
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verified
Multiple Choice
A) Plasma membrane.
B) Cytosol.
C) Inner mitochondrial membrane.
D) Endoplasmic reticulum.
E) Ribosome.
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True/False
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verified
Multiple Choice
A) protons;water
B) cations;anions
C) charged molecules;uncharged molecules
D) uncharged molecules;charged molecules
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Multiple Choice
A) rely only on anaerobic glycolysis for energy.
B) have fewer mitochondria.
C) have no mitochondria.
D) cannot make ATP.
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True/False
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Multiple Choice
A) The substrate will be oxidized until the addition of the 2,4-dinitrophenol,which blocks further oxidation.
B) There is no effect;oxidation of the substrate continues at the same rate before and after the addition of 2,4-dinitrophenol.
C) The substrate cannot be oxidized either with or without 2,4-dinitrophenol unless ADP is also present.
D) Oxidation of the substrate does not occur until the 2,4-dinitrophenol is added.Afterward,oxidation proceeds rapidly until all of the substrate is consumed.
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True/False
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Multiple Choice
A) contains ATP synthase complex.
B) is the location of specific transporter proteins.
C) is a barrier to protons.
D) is not rich in proteins.
E) is rich in proteins.
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Multiple Choice
A) One reaction will normally not occur without the other.
B) One is always exergonic and the other is always endergonic.
C) Only oxidation-reduction reactions can be coupled.
D) Coupled reactions are always driven by the ATP to ADP conversion.
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True/False
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Multiple Choice
A) Aspartate residues in the active site.
B) The porphyrin ring.
C) The multiple α-helices.
D) The iron ion.
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verified
True/False
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verified
Multiple Choice
A) increased ATP production by ATP synthase
B) uncoupling by thermogenin
C) a greater pH gradient across the inner mitochondrial membrane by complex IV
D) insufficient NADH production during the citric acid cycle due to less active pyruvate translocase.
Correct Answer
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