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- Chemiosmosis is a critical step in ATP production. Indicate which 2 items are true about chemiosmosis Group of answer choices It occurs during oxidative phosphorylation but not photophosphorylation It generates ATP by passing electrons across a semipermeable membrane It is part of the Calvin Cycle It is a catabolic process It is an anabolic process. It is part of the Krebs Cycle It generates ATP by passing protons across a semipermeable membraneWhich of the following are true statements regarding cellular respiration? (Select all that apply) Group of answer choices Lactic acid fermentation is an aerobic process The final electron acceptor in the electron transport chain is oxygen Two ATP are produced in the citric acid cycle Glycolysis produces two net molecules of ATP Four ATP are produced in the Krebs cycleWhich of the following statements best explains why anaerobic respiration releases energy from organic compounds Anaerobic respiration partially oxidizes glucose, which is an organic compound This happens during glycolysis The result of the glycolysis is the net production of 2 ATP molecules which are used by the cell for energy Anaerobic respiration partially oxidizes glucose, which is an inorganic compound This happens during glycolysis The result of the glycolysis is the net production of 4 ATP molecules which are used by the cell for energy Anaerobic respiration partially oxidizes glucose, which is an organic compound This happens during glycolysis The result of the glycolysis is the net production of 4 ATP molecules which are used by the cell for energy Anaerobic respiration fully oxidizes glucose, which is an organic compound This happens during glycolysis The result of the glycolysis is the net production of 4 ATP molecules which are used by the cell for energy
- Which of the following processes produce the most ATP during aerobic respiration? Group of answer choices Electron transport chain and oxidative phosphorylation Fermentation Substrate level phosphorylation TCA cycleATP is generated following the oxidation of NADH during which of the following stages of aerobic cellular respiration? Question options: Krebs cycle glycolysis this process does NOT occur during any of the listed stages electron transport pathway Calvin cycleAll of the following are true for both anaerobic respiration and fermentation except: Lack the electron transport chain Result in the production of NADH Produce less ATP than aerobic respiration Involve the breakdown of glucose to pyruvic acid Can proceed in the absence of oxygen
- In biological systems, anabolic and catabolic reactions are "coupled" (or linked) by: Krebs cycle The Electron Transport Chain Photosynthesis Adenosine Triphosphate (ATP) GlycolysisWhich of the following compounds involved in aerobic respiration can originate from the breakdown of proteins? Select all that apply. Citric acid cycle intermediates Acetyl-CoA Pyruvate PGALIn which of the following ways is photophosphorylation similar to oxidative phosphorylation in aerobic respiration? FADH, is involved in both pathways. O Both use chemiosmosis. NADH carries electrons to the electron transport chain in both pathways. Both use oxygen as a terminal electron acceptor.
- Which of the following are stages of electron transfer phosphorylation? Select all that apply. Oxygen collects electrons from the end of the electron transfer chain to combine with hydrogen ions to form water. The electron transfer chain fuels active transport of hydrogen ions from the matrix to the intermembrane space. Hydrogen ion flow through an ATP synthase produces ATP. The NADH and FADH produced in the prior steps of aerobic respiration deliver electrons and hydrogen ions to the electron transfer chain.Which of the following processes regenerate NAD* by reducing another molecule? Select all that apply. Aerobic cellular respiration Alcohol fermentation Anaerobic cellular respiration Lactic acid fermentationWhich of the following regarding the ATP Synthase is INCORRECT? Protons flow through the a and c subunits The translocation of four protons through the ATP synthase fuels the synthesis of one ATP molecule The F1 domain can function as an ATPase The y subunit rotates while the xß dimers are stationary