A student ran the following reaction in the laboratory at 655 K: 2NH3(9) N₂(g) + 3H₂(g) When she introduced NH3(g) at a pressure of 1.09 atm into a 1.00 L evacuated container, she found the equilibrium partial pressure of H₂(g) to be 1.60 atm. Calculate the equilibrium constant, Kp, she obtained for this reaction. Kp =

Chemistry: The Molecular Science
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ISBN:9781285199047
Author:John W. Moore, Conrad L. Stanitski
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Chapter19: The Chemistry Of The Main-group Elements
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Problem 60QRT
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A student ran the following reaction in the laboratory at 655 K:
2NH3(g) N₂(g) + 3H₂(g)
When she introduced NH3(g) at a pressure of 1.09 atm into a 1.00 L evacuated container, she found the equilibrium
partial pressure of H₂(g) to be 1.60 atm.
Calculate the equilibrium constant, Kp, she obtained for this reaction.
Kp
=
Transcribed Image Text:A student ran the following reaction in the laboratory at 655 K: 2NH3(g) N₂(g) + 3H₂(g) When she introduced NH3(g) at a pressure of 1.09 atm into a 1.00 L evacuated container, she found the equilibrium partial pressure of H₂(g) to be 1.60 atm. Calculate the equilibrium constant, Kp, she obtained for this reaction. Kp =
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