The relationship of free-energy change (AG) to the concentrations of reactants and products is important because it predicts the direction of spontaneous chemical reactions. In the hydrolysis of ATP to ADP and inorganic phosphate (Pi), the standard free-energy change (AG) is -7.3 kcal/mole. The free-energy change depends on concentrations according to the following equation: AG=AG +0.616 In (k) In a plant cell, the concentrations of ATP, ADP, and P, are approximately 5, 2, and 10, respectively. What is the delta G for ATP synthesis in the plant cell? Make sure to show ALL your work on how you would fill in this equation. Here are some natural logs pre-calculated for you In (1) = 0 In (0.25) = -1.38 In (4) = 1.38 In (2) = 0.693 In (2.4) = 0.875 In (0.416) -0.875 = In (12) = 2.485 In (0.5) = -0.693

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The relationship of free-energy change (AG) to the concentrations of reactants and products is important because it predicts the direction of
spontaneous chemical reactions. In the hydrolysis of ATP to ADP and inorganic phosphate (Pi), the standard free-energy change (AG) is
-7.3 kcal/mole. The free-energy change depends on concentrations according to the following equation:
AG=AG +0.616 In (k)
In a plant cell, the concentrations of ATP, ADP, and P; are approximately 5, 2, and 10, respectively. What is the delta G for ATP synthesis in
the plant cell? Make sure to show ALL your work on how you would fill in this equation.
Here are some natural logs pre-calculated for you
In (1) = 0
In (0.25) = -1.38
In (4) = 1.38
In (2) = 0.693
In (2.4) = 0.875
In (0.416)= -0.875
In (12) = 2.485
In (0.5) = -0.693
Transcribed Image Text:The relationship of free-energy change (AG) to the concentrations of reactants and products is important because it predicts the direction of spontaneous chemical reactions. In the hydrolysis of ATP to ADP and inorganic phosphate (Pi), the standard free-energy change (AG) is -7.3 kcal/mole. The free-energy change depends on concentrations according to the following equation: AG=AG +0.616 In (k) In a plant cell, the concentrations of ATP, ADP, and P; are approximately 5, 2, and 10, respectively. What is the delta G for ATP synthesis in the plant cell? Make sure to show ALL your work on how you would fill in this equation. Here are some natural logs pre-calculated for you In (1) = 0 In (0.25) = -1.38 In (4) = 1.38 In (2) = 0.693 In (2.4) = 0.875 In (0.416)= -0.875 In (12) = 2.485 In (0.5) = -0.693
ن
inbulin
27
3
et en k + ا = ما
Penais ) ا مااقا + جان - جائے
ما
(+) ما .0+ 2 - 0
(۱) ماه + 6
( ) اما 2 + 6 = 2
ے( + 6 =
8 = 6 + 6
- -
-85*
insalm/recop
-AG
- #
AG' = + #
products
3
(2) = (
(2) =
«
An (3)
An (3)
Transcribed Image Text:ن inbulin 27 3 et en k + ا = ما Penais ) ا مااقا + جان - جائے ما (+) ما .0+ 2 - 0 (۱) ماه + 6 ( ) اما 2 + 6 = 2 ے( + 6 = 8 = 6 + 6 - - -85* insalm/recop -AG - # AG' = + # products 3 (2) = ( (2) = « An (3) An (3)
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