When 6.0 moles of methane (CH.) gas and 4.0 mol of O2 gas were injected into a 2.0-L flask an. equilibrium formed according to the equation shown below. If the equilibrium mixture was analyzed and found to contain 4.0 moles of CH, gas then calculate the value of the equilibrium constant. CH(g) + 2 02(g) CO:(g) + 2 H2O(g), AH =- 890.7 KJ/mol

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Chapter17: Equilibrium
Section: Chapter Questions
Problem 10ALQ: . Consider an equilibrium mixture consisting of H2O(g), CO(g). H2(g), and CO2(g) reacting in a...
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When 6.0 moles of methane (CH.) gas and 4.0 mol of O2 gas were injected into a 2.0-L flask an
equilibrium formed according to the equation shown below. If the equilibrium mixture was
analyzed and found to contain 4.0 moles of CH, gas then calculate the value of the equilibrium
constant.
CH(g) + 2 02(g) CO:(g) + 2 H2O(g),
AH =- 890.7 KJ/mol
Transcribed Image Text:When 6.0 moles of methane (CH.) gas and 4.0 mol of O2 gas were injected into a 2.0-L flask an equilibrium formed according to the equation shown below. If the equilibrium mixture was analyzed and found to contain 4.0 moles of CH, gas then calculate the value of the equilibrium constant. CH(g) + 2 02(g) CO:(g) + 2 H2O(g), AH =- 890.7 KJ/mol
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