An evacuated (i.e. empty) vessel is charged with 0.0234 atm of 12 (g), 0.0234 atm of Br2 (g), and 0.6842 atm of IBr. The following reaction proceeds to reach equilibrium. 12 (g) + Br2 (g) = 2 1Br (g) The equilibrium constant for this reaction at this temperature is Kp = 247. At equilibrium, the pressure bromine gas in this system is ? atm. Report your answer to 3 significant figures, i.e. 0.0123 atm.

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
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An evacuated (i.e. empty) vessel is charged
with 0.0234 atm of 12 (g), 0.0234 atm of Br2
(g), and 0.6842 atm of IBr. The following
reaction proceeds to reach equilibrium.
12 (g) + Br2 (g) =
2 1Br (g)
The equilibrium constant for this reaction at
this temperature is Kp = 247. At equilibrium,
the pressure bromine gas in this system is ?
atm.
Report your answer to 3 significant figures,
i.e. 0.0123 atm.
Transcribed Image Text:An evacuated (i.e. empty) vessel is charged with 0.0234 atm of 12 (g), 0.0234 atm of Br2 (g), and 0.6842 atm of IBr. The following reaction proceeds to reach equilibrium. 12 (g) + Br2 (g) = 2 1Br (g) The equilibrium constant for this reaction at this temperature is Kp = 247. At equilibrium, the pressure bromine gas in this system is ? atm. Report your answer to 3 significant figures, i.e. 0.0123 atm.
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