Use the following information corresponding to 1 Molar concentrations of reactants and products for Questions 1-6. 1,3-Bisphosphoglycerate + ADP →ATP + 3-Phosphoglycerate + H+: AH = 41.02 kJ/mol and AS = 0.3030 kJ/molk. Based on the information given above, Which of the following statements regarding this folding process are correct?__ Enthalpically driven. Entropically driven. Enthalpicaly Opposed Entropically Opposed At equilibrium Exergonic for all temperatures T Endergonic for all temperatures T Exothermic Endothermic

Chemistry & Chemical Reactivity
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Use the following information corresponding to 1 Molar concentrations of reactants and products for Questions 1 -6. 

1,3-Bisphosphoglycerate + ADP →ATP + 3-Phosphoglycerate + H+:

ΔH = 41.02 kJ/mol and   ΔS  = 0.3030  kJ/molK. 

Based on the information given above, Which of the following statements regarding this folding process are correct?__

 

Enthalpically driven.
Entropically driven.
Enthalpicaly Opposed
Entropically Opposed
At equilibrium
Exergonic for all temperatures T
Endergonic for all temperatures T
Exothermic
Endothermic
Use the following information corresponding to 1 Molar concentrations of reactants
and products for Questions 1-6.
1,3-Bisphosphoglycerate + ADP →ATP + 3-Phosphoglycerate + H+:
AH = 41.02 kJ/mol and AS = 0.3030 kJ/molk.
Based on the information given above, Which of the following statements regarding
this folding process are correct?__
Enthalpically driven.
Entropically driven.
Enthalpicaly Opposed
Entropically Opposed
At equilibrium
Exergonic for all temperatures T
Endergonic for all temperatures T
Exothermic
Endothermic
Transcribed Image Text:Use the following information corresponding to 1 Molar concentrations of reactants and products for Questions 1-6. 1,3-Bisphosphoglycerate + ADP →ATP + 3-Phosphoglycerate + H+: AH = 41.02 kJ/mol and AS = 0.3030 kJ/molk. Based on the information given above, Which of the following statements regarding this folding process are correct?__ Enthalpically driven. Entropically driven. Enthalpicaly Opposed Entropically Opposed At equilibrium Exergonic for all temperatures T Endergonic for all temperatures T Exothermic Endothermic
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