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Chemistry · General chemistry II · Worked example

Reverse, scale and combine equilibrium constants

At a certain temperature, Kc = 0.50 for N₂(g) + 3H₂(g) ⇌ 2NH₃(g). Find Kc for (a) 2NH₃(g) ⇌ N₂(g) + 3H₂(g) and (b) 2N₂(g) + 6H₂(g) ⇌ 4NH₃(g).

Reverse the equation

Reversing swaps products and reactants, so the new expression is the reciprocal of the old one, and so is its value.

Kreverse=10.50=2.0

Double the coefficients

Every exponent doubles, so the expression becomes [NH₃]⁴/([N₂]²[H₂]⁶), the square of the original. K is squared.

Kdoubled=(0.50)2=0.25

Adding equations

When two equations add to a third, the third’s expression is the product of the other two, so its K is K₁K₂. Reversing and scaling first, then multiplying, gives K for any combination.

Result

(a) Kc = 2.0; (b) Kc = 0.25.

Your turn

For A ⇌ B, K₁ = 4.0, and for B ⇌ C, K₂ = 0.50. Find K for A ⇌ C.

Show the answer and explanation

K = 2.0.

Adding A ⇌ B and B ⇌ C gives A ⇌ C, so K = K₁K₂ = (4.0)(0.50) = 2.0.

(4.0)⁢(0.50)=2.0

Keep exploring

In Equilibrium & ICE tables, test a mixture of 1.0 M each of NH₃, N₂ and H₂ against the reversed reaction with K = 2.0: Q = 1.0 < K, so ammonia decomposes. The original equation with K = 0.50 gives Q = 1.0 > K and the same change, described in reverse.

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