Calculate A,G° at 25 °C for the formation of 1.00 mol of C3H;OH(g) from C3 H6 (g) and H20(g). Use this value to calculate K, for the equilibrium. C3He (g) + H20(g) 2 C;H¬OH(g) Use the following data: kJ A;G", mol C,H6 (g) H2O(g) C3H;OH(g) 62.71 -228.59 -170.65 Kp The v value of A, G° and the| v value of Kp indicate that the reaction is product-favored.

Principles of Modern Chemistry
8th Edition
ISBN:9781305079113
Author:David W. Oxtoby, H. Pat Gillis, Laurie J. Butler
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Chapter14: Chemical Equilibrium
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Calculate A,G° at 25 °C for the formation of 1.00 mol of C3H;OH(g) from C3 H6 (g) and H20(g). Use this value to calculate K, for the equilibrium.
C, H6 (g) + H2O(g)2 C,H;OH(g)
Use the following data:
kJ
A;G",
mol
C,H6 (g)
H2O(g)
C3H;OH(g)
62.71
-228.59
-170.65
Kp
The
v value of A, G° and the|
v value of Kp indicate that the reaction is product-favored.
Transcribed Image Text:Calculate A,G° at 25 °C for the formation of 1.00 mol of C3H;OH(g) from C3 H6 (g) and H20(g). Use this value to calculate K, for the equilibrium. C, H6 (g) + H2O(g)2 C,H;OH(g) Use the following data: kJ A;G", mol C,H6 (g) H2O(g) C3H;OH(g) 62.71 -228.59 -170.65 Kp The v value of A, G° and the| v value of Kp indicate that the reaction is product-favored.
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