1. Eukaryotic cells primarily utilize glucose (C,H1,0) for cellular respiration. However, they can 'burn' other energy rich compounds through conversion to glycolytic intermediates followed by complete combustion to CO, and H;0. Based on their structural formulas and your knowledge of the glycolytic, TCA, and electron transport pathways, which of the substances below releases more energy on complete combustion to CO; and H;0? Be as specific as possible. CH,OH CH2OH он но OH но ČH2OH он он

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Chapter1: Chemical Foundations
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Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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1. Eukaryotic cells primarily utilize glucose (CH2O.) for cellular respiration. However, they can 'burn' other energy rich
compounds through conversion to glycolytic intermediates followed by complete combustion to CO, and H;0. Based on
their structural formulas and your knowledge of the glycolytic, TCA, and electron transport pathways, which of the
substances below releases more energy on complete combustion to CO; and H;O? Be as specific as possible.
CH,OH
CH2OH
Он
но
он
HỌ
CH2OH
он
он
2. Why do muscle cells convert pyruvate to lactate, which is essentially a metabolic dead end that just leads back to
pyruvate? Be specific and detailed.
Transcribed Image Text:1. Eukaryotic cells primarily utilize glucose (CH2O.) for cellular respiration. However, they can 'burn' other energy rich compounds through conversion to glycolytic intermediates followed by complete combustion to CO, and H;0. Based on their structural formulas and your knowledge of the glycolytic, TCA, and electron transport pathways, which of the substances below releases more energy on complete combustion to CO; and H;O? Be as specific as possible. CH,OH CH2OH Он но он HỌ CH2OH он он 2. Why do muscle cells convert pyruvate to lactate, which is essentially a metabolic dead end that just leads back to pyruvate? Be specific and detailed.
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