Mohammad C Secure https://learn.kent.edu/bbcswebdav/pid-8152838-dt-content-rid-9
ID: 261940 • Letter: M
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Mohammad C Secure https://learn.kent.edu/bbcswebdav/pid-8152838-dt-content-rid-94838813_1/courses/11331-11342-22012-22032.201810/Problem%20set%20%20ch%20.-Q ? Problem set Ch. 3,13, 14,16 for 4.13.18(1).pdf 2 6 S. Glycolysis generatesin the (a) acetyl CoA; cytoplasm (b) ATP; mitochondrial matrix (c) acetyl CoA; mitochondrial matrix (d) ATP; cytoplasm 6. The citric acid cycle generates NADH which is then used in the process of oxidative phosphorylation to make ATP. If the citric acid cycle (which does not use oxygen) and oxidative phosphorylation are separate processes, as they are, then why is it that the citric acid cycle stops almost immediately when O2 is removed? 7. Which component of the electron-transport chain is required to combine the pair of electrons with molecular oxygen? (a) cytochrome c (b) cytochrome b-c complex (ubiquinone (d cytochrome coxidase 8. hen ATP synthase makes ATP it converts energy in to emergy. (a) chemical bond; mechanical (b) mechanical; proton gradient (c) mechanical; chemical bond (d) proton gradient; high energy electronExplanation / Answer
5. C. Acetyl coA is generated in mitochondrial matrix. In glycolysis, by oxidative decarboxylation of pyruvate, acetyl coA is generated in mitochondrial matrix.
8. D. Proton gradient, high energy electron.
ATP synthase is a membrane bound enzyme which produces ATP across inner mitochondrial membrane and it utilises two atp molecules.
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