Which molecule has the greatest amount of potential energy? a. Pyruvate c. Glucose b. Acetyl CoA d. CO2
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Which molecule has the greatest amount of potential energy?
a. Pyruvate c. Glucose
b. Acetyl CoA d. CO2
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- Which molecule has the greatest amount of potential energy? A. Pyruvate B. Oxygen C. Glucose D. CO2Which of the given metabolites is common in respiration mediated breakdown of fat and protein? a.Dihydroxyacetone phosphate b.Glyceraldehyde 3 phosphate c.Acetyl CoA d.Phosphoenol pyruvateWhat must pyruvate be converted to before it can enter the citric acid cycle? A. NADH B. lactic acid C. ethyl alcohol D. acetyl COA
- Which of the following molecules is an energy currency molecule required in fatty acid synthesis? a. NADH b. NAD+ c. NADPH d. NADP+Starting with acetyl-CoA in the mitochondria, how many ATP molecules are needed to synthesize a 14 C fatty acid? A. 3 B. 6 C. 9 D. 12In the glyoxylate cycle, isocitrate is converted directly to what substance? a.fumarate b.succinate c.malate d.oxaloacetate
- Glycolysis and Krebs cycle produced small amount of energy converted to ATP. Predict the form of the rest usable energy at this point. A. NADH and FADH2 B. Acetyl CoA C. Citrate D. PyruvateIf the C-1 carbon of glucose is labeled with 14C, which C atom in the pyruvate is the labeled carbon at the end of glycolysis? A. Carbonyl carbon B. Carboxylate carbon C. Methyl carbon D. NoneWhich of the given process does not occur in mitochondria? a.Formation of acetyl CoA b.Oxidation of NADH + Ht c.Citric acid formation d.Conversion of pyruvic acid to acetaldehyde
- How many NADPH and ATP are used in the synthesis of the C16:0 fatty acid starting from acetyl-CoA and bicarbonate? A. 7 NADPH, 7 ATP B. 8 NADPH, 8 ATP C. 14 NADPH, 7 ATP D. 16 NADPH, 8 ATP E. 14 NADPH, 8 ATPWhich stage of cellular respiration DOES NOT produce NADH? A. oxidative phosphorylation B. pyruvate oxidation C. glycolysis D. Krebs cycleWhich one of the following compounds cannot give rise to the net synthesis of Glucose? a. Lactate b. Alanine c. Glycerol d. Acetyl CoA