6. Gluconeogenesis generates ________. Select one: A. 2 ATP and 2 NADH B. 1 ATP and 1 NADH C. 1 ATP and 0 NADH D. 0 ATP and 0 NADH
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6. Gluconeogenesis generates ________.
2 ATP and 2 NADH
1 ATP and 1 NADH
1 ATP and 0 NADH
0 ATP and 0 NADH
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- when NADH donates electrons to the ETC, ___________. select all that applies NADH gets oxidized NADH gets reduced it generates FADH2 it generates NAD+A single futile cycle, i.e. one round of glycolysis plus one round of gluconeogenesis consumes: 6 ATP; 2 NADH ○ 4 ATP: 0 NADH ○ 2 ATP; 1 NADH O 4 ATP; 4 NADH MAPeroxisomes will convert acetaldehyde using_______NAD+ into acetyl-COA
- 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 « PreviousGlycolysis and Krebs cycle pror TWGPalygXphYW9-zKh7Bt-bdNc75nprw176dBUWOA mResponse 23. Select the situation that will NOT happen if ATP synthase is not functioning. O A. Damage to the chemiosmosis process. B. The number of ATP produced is reduced. C. ATP can be produced through oxidative phosphorylation. D. Accumulation of proton ions in the intercellular membrane. 24. Oxidation of organic compounds that produced carbon dioxide, water and release of free energy causing reduction of the final acceptor molecule: oxygen. Justify the reason. ray bonds than those inThe final net products of glycolysis are ________. 4 molecules of ATP and 2 NADH 4 molecules of ATP and 2 NADH 2 molecules of ATP and 2 NADH 2 molecules of ATP and 2 NADH 2 molecules of ATP and 4 NADH 2 molecules of ATP and 4 NADH
- How many NADH _____& ATP _____are produced from the beta oxidation of Lauric Acid?Which Molecule Is Being Reduced In The Reation Pyruvate (C3H4O3) + NADH+H+ -> Lactate (C3H6O3)+NAD+Fermentation..... takes place in mitochondria allows cells to produce large amounts of ATP produces pyruvate as the final product provides a mechanism for oxidizing NADH
- 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.The question is not being answered for either of them. What is the maximum ATP including converting any NADH, FADH2, and/or NADPH to ATP and adding it to the number of ATP produced?Study Figure 19.18 and decide which of the following statements is false. Pyruvate dehydrogenase is inhibited by· NIADH. Pyruvate dehydrogenase is inhibited by AΤΡ. Citrate synthase is inhibited by NADH. Succinyl-CoA activates citrate synthase. Acetyl-CoA activates pyruvate carboxylase.