An experimenter places 15.0 mmol of A and 18.0 mmol of B in a container. The container is heated to 600 K, and the gas-phase equilibrium A + B ↔ 2C + 3D is established. The equilibrium mixture has a pressure of 1085 torr and contains 10.0 mmol of C. Calculate K0p ∆Gθ at 600 K, assuming ideal gas.
An experimenter places 15.0 mmol of A and 18.0 mmol of B in a container. The container is heated to 600 K, and the gas-phase equilibrium A + B ↔ 2C + 3D is established. The equilibrium mixture has a pressure of 1085 torr and contains 10.0 mmol of C. Calculate K0p ∆Gθ at 600 K, assuming ideal gas.
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An experimenter places 15.0 mmol of A and 18.0 mmol of B in a container. The container is heated to 600 K, and the gas-phase equilibrium A + B ↔ 2C + 3D is established. The equilibrium mixture has a pressure of 1085 torr and contains 10.0 mmol of C. Calculate K0p ∆Gθ at 600 K, assuming ideal gas.
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