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Q.(i) State Faraday's first and second laws of electrolysis. A solution of CuSO4 is electrolysed for 10 minutes with a current of 1.5 amperes. What is the mass of copper deposited at the cathode?

(ii) What is molecularity of a reaction? How is it different from the order of a reaction? Name one bimolecular and one trimolecular gaseous reactions.
Andhra Pradesh BieapBIEAP Intermediate Board 2020Subjective· 8mImportance★★★★★
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Faraday's laws quantify electrolysis (giving ~0.296 g Cu here); molecularity (from the mechanism) and order (from the experimental rate law) are related but distinct ideas.

  1. Faraday's laws of electrolysis: First law: The mass (w) of a substance deposited or liberated at an electrode during electrolysis is directly proportional to the quantity of electric charge (Q) passed through the electrolyte: w = Z.Q = Z.I.t where I is the current, t is the time, and Z is the electrochemical equivalent of the substance. Second law: When the same quantity of electricity is passed through several different electrolytes connected in series, the masses of the different substances liberated at their respective electrodes are directly proportional to their chemical equivalent weights: w1/w2 = E1/E2. Numerical (mass of Cu deposited): Charge passed, Q = I x t = 1.5 A x (10 x 60 s) = 1.5 x 600 = 900 C. Cu2+ + 2e- -> Cu, so depositing 1 mole of Cu (63.5 g) needs 2 moles of electrons = 2F = 2 x 96500 = 193000 C. Mass deposited = (Q / 2F) x atomic mass of Cu = (900 / 193000) x 63.5 = 0.296 g (approximately).
  2. Molecularity vs Order of reaction: Molecularity is the number of reacting species (atoms, ions, or molecules) that must collide simultaneously to bring about a chemical reaction in one elementary step. It is a purely theoretical concept, deduced from the balanced stoichiometric equation of an elementary reaction, and is always a whole number (1, 2, or rarely 3) - it can never be zero or fractional. …

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