How many $ATP$ molecules are produced via substrate-level phosphorylation during the complete oxidation of one molecule of $3-PGA$?

  • A
    $1$
  • B
    $2$
  • C
    $3$
  • D
    $4$

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Similar Questions

$A-$ $A$ total of $10$ $NADH + H^+$ and $2$ $FADH_2$ molecules are formed in aerobic respiration.
$R-$ One $NADH + H^+$ and $1$ $FADH_2$ are helpful in the formation of $3$ and $2$ $ATP$ molecules respectively.

Why is the respiratory balance sheet not considered logical?

During aerobic respiration in a eukaryotic cell,the net gain of $ATP$ molecules from one molecule of glucose is $.....$

How many $ATP$ molecules could maximally be generated from one molecule of glucose,if the complete oxidation of one mole of glucose to $CO_2$ and $H_2O$ yields $686 \ kcal$ and the useful chemical energy available in the high-energy phosphate bond of one mole of $ATP$ is $12 \ kcal$?

$ATP$ generated by $1$ $NADH_2$ and $1$ $FADH_2$ are respectively:

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