Amount of energy released during hydrolysis of a high energy bond of ATP is \({\rm{7}}{\rm{.3}}\;{\rm{kcal}}\;{\rm{mo}}{{\rm{l}}^{{\rm{ - 1}}}}\)
BIOXI14: RESPIRATION IN PLANTS
337735
Statement A : The NADH synthesised in glycolysis is transferred into the cytoplasm and undergoes oxidative phosphorylation Statement B : Generally 36 ATP are produced if none of the intermediates in the pathway are utilised to synthesise any other compound.
1 Statement A is correct but Statement B is incorrect.
2 Statement A is incorrect but Statement B is correct.
3 Both Statements are correct.
4 Both Statements are incorrect.
Explanation:
The NADH synthesised in glycolysis is transferred into the mitochondria and undergoes oxidative phosphorylation.
Amount of energy released during hydrolysis of a high energy bond of ATP is \({\rm{7}}{\rm{.3}}\;{\rm{kcal}}\;{\rm{mo}}{{\rm{l}}^{{\rm{ - 1}}}}\)
BIOXI14: RESPIRATION IN PLANTS
337735
Statement A : The NADH synthesised in glycolysis is transferred into the cytoplasm and undergoes oxidative phosphorylation Statement B : Generally 36 ATP are produced if none of the intermediates in the pathway are utilised to synthesise any other compound.
1 Statement A is correct but Statement B is incorrect.
2 Statement A is incorrect but Statement B is correct.
3 Both Statements are correct.
4 Both Statements are incorrect.
Explanation:
The NADH synthesised in glycolysis is transferred into the mitochondria and undergoes oxidative phosphorylation.