Using the equilibrium shown below, fill in the table showing which way each stress would shift things to re-establish equilibrium and the effect on the value of Kc each stress will have. Assume that only the stress that is being applied is happening to the system at equilibrium and nothing else changes (e.g. the volume of the container remains constant unless you are told otherwise). 2CHCl3(g) +Cl2(g) = 2CCl4(1) + H₂(g) Stress Add Cl2(g) Add CC140) Remove CHCl3(g) Cool System Add a catalyst Reduce volume Add He(g) AH = -60 kJ Direction of shift to re- establish equilibrium Change in the value of Кс

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O Using the equilibrium shown below, fill in the table showing which way each stress
would shift things to re-establish equilibrium and the effect on the value of Kc each
stress will have. Assume that only the stress that is being applied is happening to the
system at equilibrium and nothing else changes (e.g. the volume of the container
remains constant unless you are told otherwise).
2CHC13(g) +Cl2(g) = 2CC14(1) + H₂(g)
Stress
Add Cl2(g)
Add CC140
Remove CHC13(g)
Cool System
Add a catalyst
Reduce volume
Add He(g)
ΔΗ = -60 kJ
Direction of shift to re-
establish equilibrium
Change in the value of
Kc
od
Transcribed Image Text:O Using the equilibrium shown below, fill in the table showing which way each stress would shift things to re-establish equilibrium and the effect on the value of Kc each stress will have. Assume that only the stress that is being applied is happening to the system at equilibrium and nothing else changes (e.g. the volume of the container remains constant unless you are told otherwise). 2CHC13(g) +Cl2(g) = 2CC14(1) + H₂(g) Stress Add Cl2(g) Add CC140 Remove CHC13(g) Cool System Add a catalyst Reduce volume Add He(g) ΔΗ = -60 kJ Direction of shift to re- establish equilibrium Change in the value of Kc od
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