5.14) The metabolic strategy of oxidative phosphorylation is to convert the chemical potential energy in reduced coenzymes, NADH and FADH2, into chemical potential energy in ATP. a) How many ATP are produced, on average, for each NADH that undergoes oxidative phosphorylation? b) How many ATP are produced, on average, for each FADH₂ that undergoes oxidative phosphorylation? EXPLANATION: The number of ATP that can be produced from NADH or FADH₂ depends on the cell and its current conditions. The latest research indicates that, on average, one NADH produces about 2.5 ATP, and one FADH₂ produces about 1.5 ATP.

Biochemistry
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Chapter1: Biochemistry: An Evolving Science
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15.14) The metabolic strategy of oxidative phosphorylation is to convert the chemical potential energy in reduced coenzymes,
NADH and FADH2, into chemical potential energy in ATP.
a) How many ATP are produced, on average, for each NADH that undergoes oxidative phosphorylation?
b) How many ATP are produced, on average, for each FADH₂ that undergoes oxidative phosphorylation?
EXPLANATION:
The number of ATP that can be produced from NADH or FADH₂ depends on the
cell and its current conditions. The latest research indicates that, on average, one
NADH produces about 2.5 ATP, and one FADH₂ produces about 1.5 ATP.
Transcribed Image Text:15.14) The metabolic strategy of oxidative phosphorylation is to convert the chemical potential energy in reduced coenzymes, NADH and FADH2, into chemical potential energy in ATP. a) How many ATP are produced, on average, for each NADH that undergoes oxidative phosphorylation? b) How many ATP are produced, on average, for each FADH₂ that undergoes oxidative phosphorylation? EXPLANATION: The number of ATP that can be produced from NADH or FADH₂ depends on the cell and its current conditions. The latest research indicates that, on average, one NADH produces about 2.5 ATP, and one FADH₂ produces about 1.5 ATP.
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