K for the reaction of hydrogen and iodine to produce hydrogen iodide. H2(g) + I2(g) 2HI(g) is 54.3 at 430°C. Calculate the equilibrium concentrations of H,, I2, and HI at 430°C if the initial concentrations are [H2]- [12]-0 M, and [HI] = 0.313 M. [H] = %3D [1]= M (HI] = %3D
K for the reaction of hydrogen and iodine to produce hydrogen iodide. H2(g) + I2(g) 2HI(g) is 54.3 at 430°C. Calculate the equilibrium concentrations of H,, I2, and HI at 430°C if the initial concentrations are [H2]- [12]-0 M, and [HI] = 0.313 M. [H] = %3D [1]= M (HI] = %3D
Chemistry
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![Be sure to answer all parts.
K, for the reaction of hydrogen and iodine to produce hydrogen iodide.
H2(g) + I2(g) = 2HI(g)
is 54.3 at 430°C. Calculate the equilibrium concentrations of H,, I,, and HI at 430°C if the initial
concentrations are [H2] [I2]-0 M, and [HI] = 0.313 M.
[H2] =
[1] =
[HI] =
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Transcribed Image Text:Be sure to answer all parts.
K, for the reaction of hydrogen and iodine to produce hydrogen iodide.
H2(g) + I2(g) = 2HI(g)
is 54.3 at 430°C. Calculate the equilibrium concentrations of H,, I,, and HI at 430°C if the initial
concentrations are [H2] [I2]-0 M, and [HI] = 0.313 M.
[H2] =
[1] =
[HI] =
< Prev
17 of 27
![Be sure to answer all parts.
The equilibrium constant K, for the reaction
H2(g) + I2(g) =2 HI(g)
is 54.3 at 430°C. Calculate the equilibrium concentrations of H,, I,, and HI at 430°C if the initial
concentrations are [H2] = [I2] = 0.222 M and [HI] = 0 M.
(H2leq
= |0.0692
[Lleg =|0.182
[HI]eg =0.826
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Transcribed Image Text:Be sure to answer all parts.
The equilibrium constant K, for the reaction
H2(g) + I2(g) =2 HI(g)
is 54.3 at 430°C. Calculate the equilibrium concentrations of H,, I,, and HI at 430°C if the initial
concentrations are [H2] = [I2] = 0.222 M and [HI] = 0 M.
(H2leq
= |0.0692
[Lleg =|0.182
[HI]eg =0.826
< Prev
18 of Microsoft Store
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