Consider the following system at equilibrium where AH° = 198 kJ, and K = 0.0290, at 1150 K: 2SO3 (9)2S02 (9) + O2(9) If the VOLUME on the equilibrium system is suddenly decreased at constant temperature: The value of K O increases O decreases O remains the same The value of Qc O is greater than K O is equal to K O is less than K. The reaction must O run in the forward direction to reestablish equilibrium. Orun in the reverse direction to reestablish equilibrium. O remain the same. It is already at equilibrium. The number of moles of O2 will O increase O decrease remain the same

Principles of Modern Chemistry
8th Edition
ISBN:9781305079113
Author:David W. Oxtoby, H. Pat Gillis, Laurie J. Butler
Publisher:David W. Oxtoby, H. Pat Gillis, Laurie J. Butler
Chapter14: Chemical Equilibrium
Section: Chapter Questions
Problem 89AP
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Consider the following system at equilibrium where AH° = 198 kJ, and K = 0.0290, at 1150 K:
2SO3 (9)2S02 (9) + O2(9)
If the VOLUME on the equilibrium system is suddenly decreased at constant temperature:
The value of K
O increases
O decreases
O remains the same
The value of Qc
O is greater than K
O is equal to K
O is less than K.
The reaction must
O run in the forward direction to reestablish equilibrium.
Orun in the reverse direction to reestablish equilibrium.
O remain the same. It is already at equilibrium.
The number of moles of O2 will
O increase
O decrease
remain the same
Transcribed Image Text:Consider the following system at equilibrium where AH° = 198 kJ, and K = 0.0290, at 1150 K: 2SO3 (9)2S02 (9) + O2(9) If the VOLUME on the equilibrium system is suddenly decreased at constant temperature: The value of K O increases O decreases O remains the same The value of Qc O is greater than K O is equal to K O is less than K. The reaction must O run in the forward direction to reestablish equilibrium. Orun in the reverse direction to reestablish equilibrium. O remain the same. It is already at equilibrium. The number of moles of O2 will O increase O decrease remain the same
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