Thermodynamic Table at 25 "C Substance AH; (kJ/mol) S(J/mol-K) CH,OH(1) -239.2 126.8 CH₂OH(g) -201.0 239.9 CH₂OH(1) CH, OH(g) AG(kJ/mol) -166.6 -162.3 The reason the vapor pressure increases with temperatures is best described as: The forward reaction is entropically driven; therefore, higher temperature is more spontaneous. The forward reaction is enthalpically driven; therefore, higher temperature is more spontaneous.
Thermodynamic Table at 25 "C Substance AH; (kJ/mol) S(J/mol-K) CH,OH(1) -239.2 126.8 CH₂OH(g) -201.0 239.9 CH₂OH(1) CH, OH(g) AG(kJ/mol) -166.6 -162.3 The reason the vapor pressure increases with temperatures is best described as: The forward reaction is entropically driven; therefore, higher temperature is more spontaneous. The forward reaction is enthalpically driven; therefore, higher temperature is more spontaneous.
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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G.231.

Transcribed Image Text:Thermodynamic Table at 25 C
Substance AH; (kJ/mol) S" (J/mol-K)
CH, OH(1)
-239.2
126.8
CH₂OH(g)
-201.0
239.9
CH₂OH(1) CH, OH(g)
AG (kJ/mol)
-166.6
-162.3
The reason the vapor pressure increases with temperatures is best described as:
The forward reaction is entropically driven; therefore, higher temperature is more spontaneous.
The forward reaction is enthalpically driven; therefore, higher temperature is more spontaneous.
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