Which of the following statements is true: the citric acid cycle occurs in the mitochondria matrix. Oxidative 50 formation occurs in the mitochondria matrix. Electron transport chain and ATP synthesis are in the Cutosol. Glycolysis occurs in the mitochondria inner membrane.
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- The citric acid cycle is a series of chemical reactions used by all aerobic organisms to release stored energy through the oxidation of acetyl-CoA derived from carbohydrates, fats, and proteins. It occurs in the mitochondria matrix. - Therefore, the statement Show more…
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Which of the following is/are true of the citric acid cycle? Select all that apply. Marks will be removed for incorrect selection(s) Select one or more: a. ATP is both hydrolyzed and generated in this set of reactions. b. These reactions involve transmembrane proteins spanning the inner mitochondrial membrane. c. These reactions occur in the mitochondrial matrix. d. Oxidative phosphorylation occurs in this stage of cellular respiration.
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The Krebs cycle takes place in the: Cytoplasm, Mitochondrial matrix, Intermembrane space of mitochondria. Oxidative phosphorylation occurs during the inner membrane of the mitochondria. The electron transport chain. Formation of NADH. Formation of FADH2. Which of the following processes in the formation of CoA from Glycolysis require the presence of O2 in order for acetyl CoA to occur? Glycogenesis, Fermentation, Citric acid cycle. More than one. The citric acid cycle occurs in the mitochondrial matrix. Storage form of glucose in animal cells is: Starch, Disaccharide, Glycogen, Glucose. Most of the ATP produced during Glycolysis is accumulated during Fermentation. Citric acid cycle. Most of the ATP produced in animal cells is produced by the Electron transport chain. Rough Endoplasmic Reticulum, Peroxisomes, Chloroplast. The final electron acceptor in aerobic respiration is Water. Oxygen. Carbon Dioxide. NAD+ and FAD. Which type of Cell respiration produces CO2? Glycolysis, Citric Acid Cycle, Fermentation, Elimination.
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Prior to glycolysis. Glycolysis. Citric acid cycle (CAC). ETC. ATP synthase.
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