4) a) A reaction chamber is divided into two sections by a partition on which a valve is inserted. One section contains pure gas A and the other section has a mixture of gases A and B. What happens when the valve is opened? Explain this process in terms of chemical potential. b) The decomposition of etane into etene and hydrogen takes places at 1000 K and under 1 bar total pressure. C,H6(g) → C2H4«g) + H2«g) The composition of the mixture at equilibrium is as follows : H2(g): 32, C2H4(g): 32, and C,H6(g):36 (mol, %). According to the data; Calculate Kp at 1000K Calculate Kp at 298.15 K, AH° = 145 kJ/mol Calculate AG° at 298.15 K

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4) a) A reaction chamber is divided into two sections by a partition on which a valve is
inserted. One section contains pure gas A and the other section has a mixture of gases A and
B. What happens when the valve is opened? Explain this process in terms of chemical
potential.
b) The decomposition of etane into etene and hydrogen takes places at 1000 K and under 1
bar total pressure.
C,H6(g) → C2H48) + H2«g)
The composition of the mixture at equilibrium is as follows :
H2(g): 32, C2H4(g): 32, and C,H6(g):36 (mol, %).
According to the data;
Calculate K, at 1000K
Calculate Kp at 298.15 K, AH° = 145 kJ/mol
Calculate AG° at 298.15 K
Transcribed Image Text:4) a) A reaction chamber is divided into two sections by a partition on which a valve is inserted. One section contains pure gas A and the other section has a mixture of gases A and B. What happens when the valve is opened? Explain this process in terms of chemical potential. b) The decomposition of etane into etene and hydrogen takes places at 1000 K and under 1 bar total pressure. C,H6(g) → C2H48) + H2«g) The composition of the mixture at equilibrium is as follows : H2(g): 32, C2H4(g): 32, and C,H6(g):36 (mol, %). According to the data; Calculate K, at 1000K Calculate Kp at 298.15 K, AH° = 145 kJ/mol Calculate AG° at 298.15 K
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