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In glycolysis two redox-equivalents are ...

In glycolysis two redox-equivalents are removed from

A

GAP

B

DHAP

C

PEP

D

1, 3-Bis PGA

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The correct Answer is:
**Step-by-Step Solution:** 1. **Understanding Glycolysis**: Glycolysis is a metabolic pathway that occurs in the cytoplasm of cells, where glucose (C6H12O6) is broken down to produce energy in the form of ATP. 2. **Identifying the Process**: During glycolysis, glucose is converted into two molecules of pyruvate. This process involves several steps, including the oxidation of intermediates. 3. **Redox Reactions in Glycolysis**: In glycolysis, redox reactions involve the transfer of electrons. Specifically, two redox equivalents (which can be thought of as electrons) are removed during the conversion of certain intermediates. 4. **Identifying the Compound**: The specific compound from which these two redox equivalents are removed is a triose phosphate. The name of this triose phosphate is glyceraldehyde 3-phosphate (GAP). 5. **Conclusion**: Therefore, the answer to the question is that the two redox equivalents are removed from glyceraldehyde 3-phosphate (GAP) during glycolysis. **Final Answer**: In glycolysis, two redox equivalents are removed from glyceraldehyde 3-phosphate (GAP). ---
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