2. An equilibrium mixture from the following reaction was found to contain 1.20 mol dm" of A, 1.00 mol dm" of B, and 0.80 mol dm' of C. A (g) = B (g) + C (g) a. What is the value of K, for this reaction? b. If the volume of the reaction vessel were suddenly doubled while the temperature remained constant, determine whether the system be at equilibrium. If not, what must occur to establish equilibrium? c. If the initial volume of the reaction vessel were halved, while the temperature remains constant, determine whether the system be at equilibrium. If not, what must occur to establish equilibrium?

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2. An equilibrium mixture from the following reaction was found to contain 1.20 mol dm³ of A, 1.00 mol dm of B, and 0.80
mol dm' of C.
A (g) = B (g) + C (g)
a. What is the value of K, for this reaction?
b. If the volume of the reaction vessel were suddenly doubled while the temperature remained constant, determine
whether the system be at equilibrium. If not, what must occur to establish equilibrium?
If the initial volume of the reaction vessel were halved, while the temperature remains constant, determine whether the
system be at equilibrium. If not, what must occur to establish equilibrium?
c.
Transcribed Image Text:2. An equilibrium mixture from the following reaction was found to contain 1.20 mol dm³ of A, 1.00 mol dm of B, and 0.80 mol dm' of C. A (g) = B (g) + C (g) a. What is the value of K, for this reaction? b. If the volume of the reaction vessel were suddenly doubled while the temperature remained constant, determine whether the system be at equilibrium. If not, what must occur to establish equilibrium? If the initial volume of the reaction vessel were halved, while the temperature remains constant, determine whether the system be at equilibrium. If not, what must occur to establish equilibrium? c.
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