Which of the Following Statements About Nad+ Is False

Which of the following statements about NAD is FALSE. Let us compare fermentation and aerobic respiration.


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B Two molecules of pyruvate are each converted into two-carbon molecules joined to a coenzyme A molecule.

. Nicotinamide adenine nucleotides NAD and NADH are molecules involved in electron transfer reactions in living organisms. NAD is reduced by the action of dehydrogenases. Which of the following statements is representative of the second law of thermodynamics.

B Protons are pumped through ATP synthase. The active part of this molecule is the part highlighted as it will add an electron and carry it into the mitochondria. Catalysis of the reaction.

Up to 24 cash back 1. - The organic cofactor is further divided into a prosthetic group which is a tightly bound organic cofactor like- heme prosthetic group tightly bound to globin protein and coenzyme which is loosely bound organic cofactor like NAD bound to YADH yeast alcohol dehydrogenase. NAD is reduced to NADH during both glycolysis and the citric acid cycle.

Answer Cells require a constant input of. This is the type of fermentation used by yeast when no O 2 is available to serve as a terminal electron acceptor think about wine making. NAD can receive electrons for use in electron transport and oxidative phosphorylation.

Fermentation accounts for only a partial breakdown of glucose whereas in aerobic respiration it is completely degraded to CO2 and H2O. Electrons stored in FADH2 are used in oxidative phosphorylation c. This is the Coenzyme Nicotinamide Adenine Dinucleotide in the oxidized reduced form.

NAD can receive electrons for use in oxidative phosphorylation. NAD accepts 2 electrons and 1 hydrogen ion. NAD is reduced by the action of dehydrogenases.

B Two of the three statements are true. NAD has more chemical energy than NADH. NAD is reduced to NADH during both glycolysis and the citric acid cycle.

The statement NAD has more chemical energy than NADH is false because NADH has actually has more chemical potential energy in the electrons it is carrying. NAD has more chemical energy than NADH. B Two of the three statements are true.

Acts as a coenzyme. In the absence of NAD glycolysis cannot. NAD has more potential energy than NADH.

C NADH and FADH2 pass their electrons to different complexes of the electron transport chain. So the correct answer is A is true but B is false Note. In each of the following multiple-choice questions characterize EACH of the three given statements as being TRUE or FALSE and then indicate the collective true-false status of the statements using the choices a All three statements are true.

Which process in eukaryotic cells will normally proceed whether O2 is. In each of the following multiple-choice questions characterize EACH of the three given statements as being TRUE or FALSE and then indicate the collective true-false status of the statements using the choices a All three statements are true. NAD is reduced to NADH during both glycolysis and the citric acid cycle.

Catalysis of the transfer of a group eg. Up to 24 cash back Which of the following statements about cellular respiration is correct. A Each pyruvate molecule has a CO2 added and then joins with an NADH.

C Only one of the statements is true. D ATP is formed because an endergonic reaction is coupled with an exergonic. Which of the following statements regarding NAD is FALSE.

Cells typically maintain a high NADNADH ratio. A NADH is produced during glycolysis pyruvate oxidation the Krebs cucle and the electron transport chain. Which of the following statements is true of glycolysis followed by fermentation.

Click on next page at the bottom of the screen after completing your response. This ten-step process begins with a molecule of glucose and ends up with two molecules of pyruvate. Which of the following statements about NAD is false.

Acceptor to regenerate NAD. NAD has more chemical energy than NADH. NAD ADP-D-ribosyl n-acceptor nicotinamide ADP-D-ribosyl n1-acceptor.

Which of the following statements about FAD and NAD is FALSE. Which of the following statements about NAD is false. Chemical diagram for NAD with nicotinamide highlighted in light red.

NAD has more chemical potential energy than NADH. C The final electron acceptor of the electron transport chain is NAD. The breakdown of glucose in cellular respiration is a catabolic reaction.

They are nucleic acids. Each molecule of NADH produced in the mitochondria provides the energy for two ATP molecules. A methyl group glycosyl group acyl group phosphorus-containing or other groups from one compound.

The byproduct is ethanol. Which of the following statements about NAD is false. NAD has a net charge of 1 O c.

NAD can receive electrons for use in oxidative phosphorylation. MULTIPLE-CHOICE FORMAT TRUE-FALSE QUESTIONS. The correct answer is 1 ie.

Which of the following statements about FAD is FALSE. Which of the following statements about NAD is false. File description from FileNicotinamide Spotlightpng.

Up to 256 cash back Which of the following statements about NADH and FADH2 is false. In fermentation there is a net gain of only two molecules of ATP for each molecule of glucose degraded to pyruvic acid whereas. NAD is reduced by the action of dehydrogenases.

NAD can receive electrons for use in oxidative phosphorylation. NAD has more chemical energy than NADH. When a molecule of glucose enters the cell it is immediately phosphorylated by the enzyme hexokinase to glucose-6-phosphate.

Lactic acid is the byproduct. More ATP is produced from the high-energy electrons carried by FADH2 than from those of NADH b. Which of the following statements about NAD is false.

Aerobic glycolysis is a series of reactions wherein oxygen is required to reoxidize NADH to NAD hence the name. A Most CO2 produced during cellular respiration is released form glycolysis. Lactic acid fermentation -pyruvic acid itself serves as the electron acceptor to regenerate NAD.

31 Which of the following statements regarding the chemical grooming of pyruvate is false. FADH2 has more chemical potential energy than FAD d. In the absence of NAD glycolysis cannot proceed.

They actually are dinucleotides each composed of two nucleotide units that are linked together by a phosphoanyhydride bond. NAD is reduced to NADH during both glycolysis and the citric acid cycle. It produces a net gain of ATP.

B FADH2 is produced during the reactions of the Krebs cycle. Because NAD and FAD are critical coenzymes in cellular respiration huge quantities must be synthesized in the cell to ensure there is no shortage. NAD is reduced by the action of dehydrogenases.

In the absence of NAD glycolysis cannot function. Comprises of two nucleotides joined by a phsophoanhydride bond.


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