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A batch reactor is charged with 11.1kmol of sulfur dioxide and 6.3kmol oxygen, which react reversibly to form sulfur trioxide. The equilibrium constant for this
A batch reactor is charged with 11.1kmol of sulfur dioxide and 6.3kmol oxygen, which react reversibly to form sulfur trioxide. The equilibrium constant for this reaction at the pressure and temperature of the reactor is provided below. SO2+1/2O2SO3K=ySO2(yO2)1/2ySO3=10.5 a) Which reactant is limiting? b) What is the maximum percent conversion of the limiting reactant (i.e., the percent conversion at equilibrium)? A batch reactor is charged with 11.1kmol of sulfur dioxide and 6.3kmol oxygen, which react reversibly to form sulfur trioxide. The equilibrium constant for this reaction at the pressure and temperature of the reactor is provided below. SO2+1/2O2SO3K=ySO2(yO2)1/2ySO3=10.5 a) Which reactant is limiting? b) What is the maximum percent conversion of the limiting reactant (i.e., the percent conversion at equilibrium)
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