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Exercises · 6.50

Q.The degree of ionization of a 0.1M bromoacetic acid solution is 0.132. Calculate the pH of the solution and the pK a of bromoacetic acid.

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[H+]=Cα[\text{H}^+] = C\alpha gives pH=1.88\text{pH} = 1.88; the Ostwald dilution law Ka=Cα21−αK_a = \dfrac{C\alpha^2}{1-\alpha} gives Ka=2.0×10−3K_a = 2.0\times10^{-3}, so pKa=2.70\text{p}K_a = 2.70.

1. Hydrogen-ion concentration and pH. For HA⇌H++A−\text{HA} \rightleftharpoons \text{H}^+ + \text{A}^- with degree of ionization α\alpha:

[H+]=Cα=0.1×0.132=1.32×10−2 M[\text{H}^+] = C\alpha = 0.1 \times 0.132 = 1.32\times10^{-2}\ \text{M}

pH=−log⁡(1.32×10−2)=1.88\text{pH} = -\log(1.32\times10^{-2}) = 1.88

2. Acid dissociation constant. Equilibrium concentrations are [HA]=C(1−α)[\text{HA}] = C(1-\alpha) and [H+]=[A−]=Cα[\text{H}^+]=[\text{A}^-]=C\alpha, so: …

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