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Q.(a) If the specific conductivity of a 0.001028(M) acetic acid solution is 4.95×10⁻⁵ S cm⁻¹, calculate the value of the dissociation constant (Kc) of acetic acid. [λ°m (CH3COOH) = 390.5 S cm² mol⁻¹]

(b) Establish the relationship between molar conductivity and equivalent conductivity in the case of a BaCl2 solution.
(c) Mention two uses of a fuel cell. OR
(a) State Faraday's first law and, from the first law, give the definition of electrochemical equivalent.
(b) Using platinum electrodes, a current of 5 amp was passed through a solution of Ni(NO3)2 for 20 minutes. Calculate how many grams of nickel will be deposited at the cathode. (Atomic mass of Ni = 58.69)
(c) What is the electrolyte used in the Mercury cell?
Tripura TbseHigher Secondary (+2 Stage) Examination 2024Subjective· 5mImportance★★★★★
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Working the conductance data through Λm = 1000κ/C and α = Λm/Λ°m gives Ka for acetic acid; equivalent vs molar conductivity for BaCl2 differ by its valence factor of 2; fuel cells power spacecraft and offer clean electricity generation. In the OR: Faraday's first law gives w = ZQ; Faraday's laws applied to a Ni²⁺ electrolysis compute the mass deposited; and the mercury cell's electrolyte is a KOH/ZnO paste.

  1. Given: κ = 4.95×10⁻⁵ S cm⁻¹, C = 0.001028 mol/L (M), λ°m(CH3COOH) = 390.5 S cm² mol⁻¹ Molar conductivity: Λm = 1000κ/C = (1000 × 4.95×10⁻⁵) / 0.001028 = 0.0495/0.001028 ≈ 48.15 S cm² mol⁻¹ Degree of dissociation: α = Λm/Λ°m = 48.15/390.5 ≈ 0.1233 Dissociation constant (Ostwald's dilution law): Ka = Cα²/(1−α) = 0.001028 × (0.1233)² / (1 − 0.1233) = 0.001028 × 0.01520 / 0.8767 ≈ 1.563×10⁻⁵ / 0.8767 ≈ 1.78×10⁻⁵
  2. For BaCl2, the valence (n) factor is 2 (since Ba2+ carries 2+ charge, equivalently there are 2 Cl⁻ per formula unit), so: Normality = 2 × Molarity Equivalent conductivity, Λeq = κ/Normality = κ/(2C) Molar conductivity, Λm = κ/C Dividing: Λm/Λeq = (κ/C) / (κ/2C) = 2 So, Λm = 2 × Λeq (molar conductivity of BaCl2 is twice its equivalent conductivity).
  3. Two uses of a fuel cell:
  1. Used in spacecraft/space vehicles (e.g., Apollo missions) to generate electrical power on board, with pure water produced as a useful by-product for the crew.
  2. Used as a clean, high-efficiency (much higher than conventional thermal power plants) source of electrical power for electric vehicles and remote/decentralised power generation, producing no polluting emissions (only water, for an H2–O2 fuel cell).

OR (a) Faraday's first law of electrolysis: the mass (w) of a substance deposited/liberated at an electrode during electrolysis is directly proportional to the quantity of electric charge (Q) passed through the electrolyte:

w ∝ Q, i.e., w = ZQ = Z × I × t …

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