Consider the system A(g) → B(g) at 25°C. Assuming that AG°A = 8.918×10³ J/mol and AG°B = 1.0034×10* J/mol, calculate the value of the equilibrium constant for this reaction. K = Calculate the equilibrium pressures that result if 1.00 mole of A(g) at 1.00 atm and 1.00 mole of B(g) at 1.00 atm are mixed at 25°C. PA- atm Рв - atm

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Consider the system A(g) → B(g) at 25°C.
Assuming that AG°A = 8.918×10³ J/mol and AG°B = 1.0034×10* J/mol, calculate the value of the equilibrium constant for this reaction.
K =
Calculate the equilibrium pressures that result if 1.00 mole of A(g) at 1.00 atm and 1.00 mole of B(g) at 1.00 atm are mixed at 25°C.
PA-
atm
Рв -
atm
Transcribed Image Text:Consider the system A(g) → B(g) at 25°C. Assuming that AG°A = 8.918×10³ J/mol and AG°B = 1.0034×10* J/mol, calculate the value of the equilibrium constant for this reaction. K = Calculate the equilibrium pressures that result if 1.00 mole of A(g) at 1.00 atm and 1.00 mole of B(g) at 1.00 atm are mixed at 25°C. PA- atm Рв - atm
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