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- Which of the following is(are) consumed in the process of converting glycerol to dihydroxyacetone phosphate? O both a and b O neither a nor b O NAD* O ATP Ne « PreviousWhich of the following enzyme catalyzes the first step of glycolysis? Group of answer choices Hexokinase Pyruvate kinase Glucokinase PhosphofructokinaseHow many ATP (of 1 mole glucose) are produced in the 2nd phase of glycolysis?o 38 ATPo 2 ATPo 4 ATPo 32 ATPo Other:
- Which of the following is/are NOT produced in glycolysis? NADH Pyruvate ATP Acetyl CoA FADH2Net moles ATP produced from one mole of glucose in glycolysis is: O O 2 4 6Which of the following correctly describes ATP usage in gluconeogenesis and glycolysis? O ATP is consumed by gluconeogenesis and produced by glycolysis. O ATP is consumed by both gluconeogenesis and glycolysis. O ATP is produced by gluconeogenesis and consumed by glycolysis. O ATP is produced by both gluconeogenesis and glycolysis. • Previous Next
- C000 C000 NADH NAD -NADH NAD* oco, NAD Oco,- FADH NADH FAD ATP ADP+,P Select the conclusion that would most accurately explain the impact on the Krebs Cycle if glycolysi were to slow down its rate of reaction. ATP production would increase since glycolysis would be using less ATP. The Krebs cycle production of FADH2 would increase. O The Krebs cycle would continue to function at a normal rate. O The Krebs cycle production of NADH would decrease.Which of the following statements about glycolysis is FALSE? O It generates 2 molecules of ATP net per molecule of glucose. O It is located in the cytosol of both prokaryotes and eukaryotes. O It requires an input of 2 molecules of ATP per molecule of glucose to generate fructose-1,6-bisphosphate. O It generates 2 molecules of NADH per molecule of glucose. O It liberates 2 molecules of CO2 per molecule of glucose.In which step of glycolysis does each of the following occurs? second substrate-level phosphorylation reaction first ATP-consuming reaction third isomerization reaction use of NAD+ as an OA
- In the presence of excess oxygen, a complete oxidation of seven molecules of glucose into carbon dioxide and water, by a yeast cell, would produce approximately ATP molecules via oxidative phosphorylation only. (Consider NADH = 3 ATP and FADH2 = 2 ATP)If there is ample oxygen available, how many ATP can be produced from complete oxidation of glucose (from glycolysis up to ETS)? Assumption: 1 NADH = 3 ATP; 1 FADH2 = 2 ATPWhich of the following is NOT produced during the oxidative phase of the pentose phosphate shunt? a Ribulose-5-Phosphate b Glyceraldehyde-3-phosphate c CO2 d NADPH