A mixture of 9.22 moles of A, 10.11 moles of B, and 27.83 moles of C is placed in a one-liter container at a certain temperature. The reaction is allowed to reach equilibrium. At equilibrium, the number of moles of B is 18.32. Calculate the equilibrium constant for the reaction: A(g) +2 B (g) <-- >3 C(g) 1.54 0.987 0.832 2.33

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A mixture of 9.22 moles of A, 10.11 moles of B, and 27.83 moles of C is
placed in a one-liter container at a certain temperature. The reaction is
allowed to reach equilibrium. At equilibrium, the number of moles of B is
18.32. Calculate the equilibrium constant for the reaction: A(g) +2 B (g) <--
> 3 C(g)
1.54
O0.987
0 832
2.33
Transcribed Image Text:A mixture of 9.22 moles of A, 10.11 moles of B, and 27.83 moles of C is placed in a one-liter container at a certain temperature. The reaction is allowed to reach equilibrium. At equilibrium, the number of moles of B is 18.32. Calculate the equilibrium constant for the reaction: A(g) +2 B (g) <-- > 3 C(g) 1.54 O0.987 0 832 2.33
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