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Exercises · 6.33

Q.The value of K c for the reaction 3O 2

(g) ⇌ 2O 3
(g) is 2.0 × 10⁻⁵⁰ at 25°C. If the equilibrium concentration of O2 in air at 25°C is 1.6 × 10⁻², what is the concentration of O3?
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Rearrange Kc=[O3]2[O2]3K_c = \dfrac{[\text{O}_3]^2}{[\text{O}_2]^3} to get [O3]=Kc [O2]3=2.86×10−28 M[\text{O}_3] = \sqrt{K_c\,[\text{O}_2]^3} = 2.86 \times 10^{-28}\ \text{M}.

1. Equilibrium expression for 3O2(g)⇌2O3(g)3\text{O}_2(g) \rightleftharpoons 2\text{O}_3(g):

Kc=[O3]2[O2]3K_c = \frac{[\text{O}_3]^2}{[\text{O}_2]^3}

2. Solve for [O3][\text{O}_3].

[O3]=Kc×[O2]3[\text{O}_3] = \sqrt{K_c \times [\text{O}_2]^3}

3. Substitute Kc=2.0×10−50K_c = 2.0\times10^{-50} and [O2]=1.6×10−2 M[\text{O}_2] = 1.6\times10^{-2}\ \text{M}:

[O2]3=(1.6×10−2)3=4.096×10−6 M3[\text{O}_2]^3 = (1.6\times10^{-2})^3 = 4.096\times10^{-6}\ \text{M}^3 …

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