The equilibrium constant, K., for the following reaction is 55.6 at 698 K. H2 (g) + I2 (g) =2 HI (g) Calculate the equilibrium concentrations of reactants and product when 0.220 moles of H2 and 0.220 moles of I, are introduced into a 1.00 L vessel at 698 [H2 ] = M [1 ] M %3D [ HI ] = M

Chemistry & Chemical Reactivity
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Author:John C. Kotz, Paul M. Treichel, John Townsend, David Treichel
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Chapter15: Principles Of Chemical Reactivity: Equilibria
Section: Chapter Questions
Problem 6PS: The equilibrium constant Kc, for the reaction 2 NOCI(g) 2 NO(g) + Cl2(g) is 3.9 103 at 300 C. A...
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The equilibrium constant, K., for the following reaction is 55.6 at 698 K.
H2 (g) + I2 (g) =2 HI (g)
Calculate the equilibrium concentrations of reactants and product when 0.220 moles of H, and 0.220 moles of I, are introduced into a 1.00 L vessel at 698 K.
[H2 ] =
[I ]
M
M
[HI ] =
M
Transcribed Image Text:The equilibrium constant, K., for the following reaction is 55.6 at 698 K. H2 (g) + I2 (g) =2 HI (g) Calculate the equilibrium concentrations of reactants and product when 0.220 moles of H, and 0.220 moles of I, are introduced into a 1.00 L vessel at 698 K. [H2 ] = [I ] M M [HI ] = M
The equilibrium constant, K., for the following reaction is 1.80x10-2 at 698 K.
2HI(g) H2(g) + I2(g)
Calculate the equilibrium concentrations of reactant and products when 0.362 moles of HI are introduced into a 1.00 L vessel at 698 K.
[HI] =
M
[H2] =
M
[1]
M
Transcribed Image Text:The equilibrium constant, K., for the following reaction is 1.80x10-2 at 698 K. 2HI(g) H2(g) + I2(g) Calculate the equilibrium concentrations of reactant and products when 0.362 moles of HI are introduced into a 1.00 L vessel at 698 K. [HI] = M [H2] = M [1] M
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