A mixture of 0.08733 mol of 0, 0.06466 mol of CH₂, 0.09603 mol of Co, and 0.05058 mol of Hy is placed in a 1.0- steel pressure vessel at 1021 K. The following equi 1₂0(g) + 1 CH₂(a)=1 CO(g) + 3H₂(g) At equilibrium 0.03585 mol of Hy is found in the reaction mixture (a) Calculate the equilibrium partial pressures of H₂O, CH₂ CD, and Pow- (20) - (b) Calculata Ke for this reaction

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Chapter17: Equilibrium
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A mixture of 0.08733 mol of H-0, 0.06466 mol of CH₂, 0.09603 mol of CO, and 0.05058 mol of Hy is placed in a 1.0-L steel pressure vessel at 1021 K. The following equillhelium is established
1 H₂O(g) + 1 CH₂(0)1 CO(g) + 3H₂(9)
At equilibrium 0.035a5 mol of Hy is found in the reaction mixture
(a) Calculate the equilibrium partial pressures of H₂O, CH₂ CO, and H₂
Ped(H₂O) =
Peo (CH)
P(CO)-
(b) Calculate Kp for this reaction.
Transcribed Image Text:A mixture of 0.08733 mol of H-0, 0.06466 mol of CH₂, 0.09603 mol of CO, and 0.05058 mol of Hy is placed in a 1.0-L steel pressure vessel at 1021 K. The following equillhelium is established 1 H₂O(g) + 1 CH₂(0)1 CO(g) + 3H₂(9) At equilibrium 0.035a5 mol of Hy is found in the reaction mixture (a) Calculate the equilibrium partial pressures of H₂O, CH₂ CO, and H₂ Ped(H₂O) = Peo (CH) P(CO)- (b) Calculate Kp for this reaction.
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