Suppose a 250. mL flask is filled with 1.0 mol of CO, 0.60 mol of NO and 1.3 mol of CO,. The following reaction becomes possible: NO,(g) + CO (g) – NO (g)+ CO,(g) The equilibrium constant K for this reaction is 3.67 at the temperature of the flask. Calculate the equilibrium molarity of NO,. Round your answer to two decimal places.
Suppose a 250. mL flask is filled with 1.0 mol of CO, 0.60 mol of NO and 1.3 mol of CO,. The following reaction becomes possible: NO,(g) + CO (g) – NO (g)+ CO,(g) The equilibrium constant K for this reaction is 3.67 at the temperature of the flask. Calculate the equilibrium molarity of NO,. Round your answer to two decimal places.
Introductory Chemistry: A Foundation
9th Edition
ISBN:9781337399425
Author:Steven S. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Donald J. DeCoste
Chapter17: Equilibrium
Section: Chapter Questions
Problem 11QAP: . What does it mean to say that a state of chemical or physical equilibrium is dynamic?
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Transcribed Image Text:Suppose a 250. mL flask is filled with 1.0 mol of CO, 0.60 mol of NO and 1.3 mol of CO2. The following reaction becomes possible:
NO,(g) + CO (g) = NO(g)+CO,(g)
The equilibrium constant K for this reaction is 3.67 at the temperature of the flask.
Calculate the equilibrium molarity of NO,. Round your answer to two decimal places.
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