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The elementary, reversible reaction 2A+B2C occurs in the gas phase, in a fixed volume batch reactor. The reactor has a volume of 100dm3 and is
The elementary, reversible reaction 2A+B2C occurs in the gas phase, in a fixed volume batch reactor. The reactor has a volume of 100dm3 and is initially loaded with 35 moles of A. If the equilibrium conversion is 0.72 when loaded with an equimolar amount B, what is the equilibrium constant (Kc) for the reaction? Given that equilibrium constant, the reaction conditions, and the reaction stoichiometry would you expect the equlibrium conversion (Xe) of the reactor to increase or decrease if it is loaded with 35 moles of A and a stoichiometric amount of B ? The elementary, reversible reaction 2A+B2C occurs in the gas phase, in a fixed volume batch reactor. The reactor has a volume of 100dm3 and is initially loaded with 35 moles of A. If the equilibrium conversion is 0.72 when loaded with an equimolar amount B, what is the equilibrium constant (Kc) for the reaction? Given that equilibrium constant, the reaction conditions, and the reaction stoichiometry would you expect the equlibrium conversion (Xe) of the reactor to increase or decrease if it is loaded with 35 moles of A and a stoichiometric amount of B
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