Consider the following reaction: Calculate the Kp and Ke of the above reaction if, at equilibrium, there are 0.02 moles of S204 and 0.90 moles of SO2 at 75°C inside a 20.00L container. Using the K, in (1), calculate the new equilibrium pressures (in atm) if the volume of the container is increased to 50.00L at the same temperature.

Chemistry: Principles and Reactions
8th Edition
ISBN:9781305079373
Author:William L. Masterton, Cecile N. Hurley
Publisher:William L. Masterton, Cecile N. Hurley
Chapter12: Gaseous Chemical Equilibrium
Section: Chapter Questions
Problem 13QAP: Consider the following reaction at 250C: A(s)+2B(g)C(s)+2D(g) (a) Write an equilibrium constant...
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GAS EQUILIBRIUM PROBLEM
Instructions: Show complete solutions. Show both the rounded and the non-rounded answers. For the
rounded answer, express in exactly 5 significant figures.
I.
Consider the following reaction:
SOz1e) = S204le)
1. Calculate the Kp and Kç of the above reaction if, at equilibrium, there are 0.02 moles of S204
and 0.90 moles of SO2 at 75°C inside a 20.00L container.
2. Using the Kp in (1), calculate the new equilibrium pressures (in atm) if the volume of the
container is increased to 50.00L at the same temperature.
3. From that in (1), calculate the new equilibrium pressures if an additional 0.50 moles of SO2 gas
is added in the mixture at the same volume and temperature.
Transcribed Image Text:GAS EQUILIBRIUM PROBLEM Instructions: Show complete solutions. Show both the rounded and the non-rounded answers. For the rounded answer, express in exactly 5 significant figures. I. Consider the following reaction: SOz1e) = S204le) 1. Calculate the Kp and Kç of the above reaction if, at equilibrium, there are 0.02 moles of S204 and 0.90 moles of SO2 at 75°C inside a 20.00L container. 2. Using the Kp in (1), calculate the new equilibrium pressures (in atm) if the volume of the container is increased to 50.00L at the same temperature. 3. From that in (1), calculate the new equilibrium pressures if an additional 0.50 moles of SO2 gas is added in the mixture at the same volume and temperature.
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