The equilibrium constant (KP) for the reaction is 4.24 at 800 K. (a) Calculate AG° for the reaction. (b) Calculate AG for the reaction when the partial pressures are PH2=0.125 atm, PCO2=0.39 atm, PH2O=0.33 atm, and PCO=0.60 atm.

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H2(8) + CO2(8)
H2O(g) + CO(g)
AG°= -12.4 kJ/mol; AG= -5.87 kJ/mol
AG°= -12.4 kJ/mol; AG= -10.29 kJ/mol
AG° = -9.608 kJ/mol; AG= -0.286 kJ/mol
AG° = -9.608 kJ/mol; AG= -18.93 kJ/mol
AG°= -12.4 kJ/mol; AG= -1.33 kJ/mol
Transcribed Image Text:H2(8) + CO2(8) H2O(g) + CO(g) AG°= -12.4 kJ/mol; AG= -5.87 kJ/mol AG°= -12.4 kJ/mol; AG= -10.29 kJ/mol AG° = -9.608 kJ/mol; AG= -0.286 kJ/mol AG° = -9.608 kJ/mol; AG= -18.93 kJ/mol AG°= -12.4 kJ/mol; AG= -1.33 kJ/mol
The equilibrium constant (KP) for the reaction is 4.24 at 800 K.
(a) Calculate AG° for the reaction.
(b) Calculate AG for the reaction when the partial pressures are PH2=0.125 atm, PCO2=0.39
atm, PH2O=0.33 atm, and PCO=0.60 atm.
2.
Transcribed Image Text:The equilibrium constant (KP) for the reaction is 4.24 at 800 K. (a) Calculate AG° for the reaction. (b) Calculate AG for the reaction when the partial pressures are PH2=0.125 atm, PCO2=0.39 atm, PH2O=0.33 atm, and PCO=0.60 atm. 2.
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