K, for the reaction of hydrogen and iodine to produce hydrogen iodide, H2(g) + I½(g) = 2HI(g) is 54.3 at 430°C. Determine the initial and equilibrium concentration of HI if initial concentrations of H2 and I2 are both 0.11 M and their equilibrium concentrations are both 0.051 M at 430°C. [HI]; M [HI)e 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
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Problem 51GQ: Kc for the decomposition of ammonium hydrogen sulfide is 1.8 104 at 25 C. NH4HS(s) NH3(g) + H2S(g)...
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K, for the reaction of hydrogen and iodine to produce hydrogen iodide,
H2(g) + I½(g) = 2HI(g)
is 54.3 at 430°C. Determine the initial and equilibrium concentration of HI if initial concentrations of
H2 and I, are both 0.11 M and their equilibrium concentrations are both 0.051 M at 430°C.
[HI];
M
[HI] =
M
Transcribed Image Text:K, for the reaction of hydrogen and iodine to produce hydrogen iodide, H2(g) + I½(g) = 2HI(g) is 54.3 at 430°C. Determine the initial and equilibrium concentration of HI if initial concentrations of H2 and I, are both 0.11 M and their equilibrium concentrations are both 0.051 M at 430°C. [HI]; M [HI] = M
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