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Question 52 of 70

Q.Write three significances of Henderson equation.

Puducherry TnboardTamil Nadu HSC (DGE) Board 2017Subjective· 3mImportance★★★★★
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Henderson's equation links the pH of a buffer to the pKapK_a of the weak acid and the ratio of conjugate base (salt) to acid, making it the working formula for all practical buffer calculations.

Derivation (brief): For a weak acid HAHA in equilibrium: HA⇌H++A−HA \rightleftharpoons H^+ + A^-, Ka=[H+][A−][HA]K_a = \dfrac{[H^+][A^-]}{[HA]}.

Taking −log⁡-\log of both sides and rearranging: pH=pKa+log⁡[A−][HA]=pKa+log⁡[salt][acid]pH = pK_a + \log\dfrac{[A^-]}{[HA]} = pK_a + \log\dfrac{[\text{salt}]}{[\text{acid}]}

(For a basic buffer of weak base and its salt: pOH=pKb+log⁡[salt][base]pOH = pK_b + \log\dfrac{[\text{salt}]}{[\text{base}]}.)

Significances:

  1. Calculating buffer pH: Given pKapK_a of the weak acid and the concentrations (or moles) of the salt and acid used to prepare the buffer, the pH of the resulting buffer solution can be directly calculated.
  2. Determining pKapK_a/KaK_a of a weak acid: If the pH of a buffer of known salt/acid ratio is measured experimentally, the equation can be rearranged to find pKapK_a (and hence Ka=10−pKaK_a = 10^{-pK_a}) of the weak acid — a practical method of determining dissociation constants. …

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