The equilibrium constant, Kp, for the following reaction is 1.80×10-2 at 698K. 2HI(g) H2(9) + I2(g) If an equilibrium mixture of the three gases in a 15.9 L container at 698K contains HI at a pressure of 1.02 atm and H2 at a pressure of 0.544 atm, the equilibrium partial pressure of I2 is atm.

Chemistry: The Molecular Science
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Author:John W. Moore, Conrad L. Stanitski
Publisher:John W. Moore, Conrad L. Stanitski
Chapter12: Chemical Equilibrium
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Problem 110QRT: The diagram represents an equilibrium mixture for the reaction N2(g) + O2(g) ⇌ 2 NO(g) Estimate the...
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The equilibrium constant, Kp, for the following reaction is 1.80x10-2 at 698K.
2HI(g)
?
H2(g) + I2(g)
If an equilibrium mixture of the three gases in a 15.9 L container at 698K contains HI at a pressure of 1.02 atm and H2 at a pressure of 0.544 atm,
the
equilibrium partial pressure of I2 is
atm.
Transcribed Image Text:The equilibrium constant, Kp, for the following reaction is 1.80x10-2 at 698K. 2HI(g) ? H2(g) + I2(g) If an equilibrium mixture of the three gases in a 15.9 L container at 698K contains HI at a pressure of 1.02 atm and H2 at a pressure of 0.544 atm, the equilibrium partial pressure of I2 is atm.
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