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Q.(i) What are Buffer Solutions ? Give an example for Buffer solution.

(2)
(ii) Explain Bronsted-Lowry concept of acids and bases
(1)
(iii) Write the relation between Kp and Kc ? (1)
Kerala DhseKerala DHSE Plus One Board 2024Subjective· 4mImportance★★★★★
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A buffer resists pH change on adding small amounts of acid/base (example: CH3COOH + CH3COONa). Bronsted–Lowry acids donate protons and bases accept them. Kp and Kc, the two equilibrium constants for gas-phase reactions, are related by Kp = Kc(RT)^Δn.

  1. Buffer solutions A buffer solution is a solution that resists (opposes) a significant change in its pH when small amounts of an acid or a base are added to it, or when it is diluted. Buffers are typically made from a mixture of a weak acid and its conjugate base (its salt with a strong base) — called an acidic buffer — or a weak base and its conjugate acid (its salt with a strong acid) — called a basic buffer. Example: a mixture of acetic acid (CH3COOH) and sodium acetate (CH3COONa) is an acidic buffer solution; it maintains its pH nearly constant around pH 4.74 (its pKa) even when small amounts of acid or base are added, because the acetate ion (from CH3COONa) can neutralise added acid while the acetic acid can neutralise added base.
  2. Bronsted–Lowry concept of acids and bases According to the Bronsted–Lowry concept, an acid is defined as a substance (molecule or ion) that can donate a proton (H⁺) to another substance — a "proton donor" — while a base is a substance that can accept a proton from an acid — a "proton acceptor." For example, in the reaction HCl + H2O → H3O⁺ + Cl⁻, HCl acts as the acid (donates a proton to water) and H2O acts as the base (accepts the proton to form the hydronium ion, H3O⁺). Each acid–base pair related by the loss/gain of a single proton (like HCl/Cl⁻ or H3O⁺/H2O) is called a conjugate acid–base pair.
  3. Relation between Kp and Kc …

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