[5] The following equilibrium constants were determined at 1123 K C(s) +CO(g) =2CO(g) K = 1.3x10¹4 CO(g) + Cl₂(g) = COCI(g) K = 6.0x10³ Determine the equilibrium constant for the reaction C(s) + CO(g) + 3Cl₂(g)2COCl2(g) at 1123K

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Chapter13: Chemical Equilibrium
Section: Chapter Questions
Problem 15Q: Suppose a reaction has the equilibrium constant K = 1.3 108. What does the magnitude of this...
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[5] The following equilibrium constants were determined at 1123 K
C(s) + CO(g) = 2CO(g) K = 1.3x 10¹4
-3
CO(g) + Cl₂(g) = COCI(g) K = 6.0x 10-³
Determine the equilibrium constant for the reaction C(s) + CO(g) + 3Cl2(g) = 2COCl2(g) at 1123K
[6] For each of the following reactions convert between Kp and Kc
a) Determine Kp at 1173K for the reaction CS2(g) + 4H₂(g) = CH4(g) + 2H2S(g) At this temperature Kc = 27.8.
b) Determine Kc at 1100K for the reaction 2SO2(g) + O2(g) = 2SO3(g). At this temperature Kp = 0.25
Transcribed Image Text:[5] The following equilibrium constants were determined at 1123 K C(s) + CO(g) = 2CO(g) K = 1.3x 10¹4 -3 CO(g) + Cl₂(g) = COCI(g) K = 6.0x 10-³ Determine the equilibrium constant for the reaction C(s) + CO(g) + 3Cl2(g) = 2COCl2(g) at 1123K [6] For each of the following reactions convert between Kp and Kc a) Determine Kp at 1173K for the reaction CS2(g) + 4H₂(g) = CH4(g) + 2H2S(g) At this temperature Kc = 27.8. b) Determine Kc at 1100K for the reaction 2SO2(g) + O2(g) = 2SO3(g). At this temperature Kp = 0.25
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