Suppose a 500. mL flask is filled with 1.2 mol of O, and 2.0 mol of NO. The following reaction becomes possible: N,(g)+ 0,(g) – 2NO(g) The equilibrium constant K for this reaction is 8.72 at the temperature of the flask. Calculate the equilibrium molarity of NO. Round your answer to two decimal places.

Chemistry: The Molecular Science
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Author:John W. Moore, Conrad L. Stanitski
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Chapter12: Chemical Equilibrium
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Calculating equilibrium composition from an equilibrium constant
Suppose a 500. mL flask is filled with 1.2 mol of O, and 2.0 mol of NO. The following reaction becomes possible:
N2(g) + 0,(g) = 2NO(g)
The equilibrium constant K for this reaction is 8.72 at the temperature of the flask.
Calculate the equilibrium molarity of NO. Round your answer to two decimal places.
OM
Check
Explanation
O 2020 McGraw-Hill Education. All Rights Reserved.
19 A
Rocord
Reactions
Transcribed Image Text:Calculating equilibrium composition from an equilibrium constant Suppose a 500. mL flask is filled with 1.2 mol of O, and 2.0 mol of NO. The following reaction becomes possible: N2(g) + 0,(g) = 2NO(g) The equilibrium constant K for this reaction is 8.72 at the temperature of the flask. Calculate the equilibrium molarity of NO. Round your answer to two decimal places. OM Check Explanation O 2020 McGraw-Hill Education. All Rights Reserved. 19 A Rocord Reactions
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