C. A mixture of 0.500 mol H₂ and 0.500 mol I, was placed in a 1.00-L stainless-steel flask at 430°C. The equilibrium constant K, for the reaction H₂(g) + 12(g) 2HI(g) is 54.3 at this temperature. Calculate the concentrations of H₂ 12, and HI at equilibrium.

Chemistry for Engineering Students
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Author:Lawrence S. Brown, Tom Holme
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Chapter12: Chemical Equilibrium
Section: Chapter Questions
Problem 12.27PAE: The following data were collected for a system at equilibrium at 140°C. Calculate the equilibrium...
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C.
A mixture of 0.500 mol H₂ and 0.500 mol I, was placed in a 1.00-L stainless-steel
flask at 430°C. The equilibrium constant K, for the reaction H₂(g) +
2HI(g) is 54.3 at this temperature. Calculate the concentrations of H₂,
12, and HI at equilibrium.
12(g)
Transcribed Image Text:C. A mixture of 0.500 mol H₂ and 0.500 mol I, was placed in a 1.00-L stainless-steel flask at 430°C. The equilibrium constant K, for the reaction H₂(g) + 2HI(g) is 54.3 at this temperature. Calculate the concentrations of H₂, 12, and HI at equilibrium. 12(g)
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