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During EMP glycolysis, 1 molecule of glucose is broken down into two molecules of pyruvate and...

During EMP glycolysis, 1 molecule of glucose is broken down into two molecules of pyruvate and 2 molecules of NADH are produced.

During fermentation, 1 molecule of pyruvate is reduced. During this process, one molecule of NADH is oxidized.

If 34 molecules of glucose are broken down during glycolysis, and all the resultant molecules of pyruvate are reduced by fermentation, how many molecules of NADH will remain?

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Answer #1

No molecules of NADH will remain.Because In the process Glycolysis 1 molecule of Glucose is converted to 2 molecules of Pyruvate and there is production of 2 ATP and 2 NADH molecules.And in the process of fermentation,1 molecule of Pyruvate undergoes reduction process by NADH molecule and and produces lactic acid and so there is no NADH molecule left after the fermentation process.

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