4. Hydrogen and carbon dioxide gases react at a high temperature to give water and carbon monoxide: H.(g) + CO.(g) H,O(g) + CO(g) a. Laboratory measurements at 986°C show that there are 0.11 mol each of CO(g) and H,O(g), and 0.087 mol each of H.(g) and CO.(g) at equilibrium in a 1.00 L container. Calculate the equilibrium constant for the reaction at 986°C. b. Suppose 0.050 mol each of H,(g) and CO,(g) are placed in a 2.00 L container. When equilibrium is achieved at 986°C, what amounts of CO(g) and H,O(g), in moles, would be present?

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So for part a) I found that k=1.60, but im stuck on part b). For part b) I calculated the concentrations for both H2 and CO2, which gave me 0.025mol/L, after that I dont know what to do.

Thank you.

4. Hydrogen and carbon dioxide gases react at a high
temperature to give water and carbon monoxide: H,(g) +
CO.(g) H,O(g) + CO(g)
a. Laboratory measurements at 986°C show that there are
0.11 mol each of CO(g) and H.O(g), and 0.087 mol
each of H,(g) and CO,(g) at equilibrium in a 1.00 L
container. Calculate the equilibrium constant for the
reaction at 986°C.
b. Suppose 0.050 mol each of H,(g) and CO,(g) are
placed in a 2.00 L container. When equilibrium is
achieved at 986°C, what amounts of CO(g) and
H,O(g), in moles, would be present?
Transcribed Image Text:4. Hydrogen and carbon dioxide gases react at a high temperature to give water and carbon monoxide: H,(g) + CO.(g) H,O(g) + CO(g) a. Laboratory measurements at 986°C show that there are 0.11 mol each of CO(g) and H.O(g), and 0.087 mol each of H,(g) and CO,(g) at equilibrium in a 1.00 L container. Calculate the equilibrium constant for the reaction at 986°C. b. Suppose 0.050 mol each of H,(g) and CO,(g) are placed in a 2.00 L container. When equilibrium is achieved at 986°C, what amounts of CO(g) and H,O(g), in moles, would be present?
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