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Q.A) Write any two factors which affects the conductance of electrolysis.
B) Corrosion is an electrochemical phenomenon. Explain.

Rajasthan RbseRajasthan Board Senior Secondary Examination 2019Subjective· 2mImportance★★★★★
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Conductance of an electrolytic solution is governed by concentration, temperature and the nature of the electrolyte/solvent, while corrosion is an electrochemical process where a metal surface sets up tiny galvanic cells that oxidise the metal at anodic regions.

A) Factors affecting the conductance of an electrolyte solution (any two):

  1. Concentration of the solution: As the solution is diluted, the specific conductivity (kappa) decreases (fewer ions per unit volume), but the molar conductivity (Lambda_m) increases, because the number of current-carrying ions per mole increases (for weak electrolytes, due to increased dissociation; for strong electrolytes, due to decreased inter-ionic attraction).
  2. Temperature: Conductance increases with increase in temperature, because ionic mobility increases (reduced viscosity of the medium, increased kinetic energy of ions) and, for weak electrolytes, degree of dissociation also increases. (Other valid factors: nature of the electrolyte - strong vs weak; nature of the solvent - its viscosity and dielectric constant; size and charge of the ions.)

B) Corrosion as an electrochemical phenomenon:

When iron is exposed to moist air, a thin film of moisture (containing dissolved CO2 and O2) on its surface acts as an electrolyte, and the metal surface itself develops small anodic and cathodic regions (due to impurities, stress, or variations in oxygen concentration), forming a tiny galvanic (electrochemical) cell:

At the anodic region: Fe -> Fe2+ + 2e- (oxidation)

The released electrons flow through the metal to a nearby cathodic region, where dissolved atmospheric oxygen is reduced:

O2 + 4H+ + 4e- -> 2H2O

(or, in neutral/near-neutral solution: O2 + 2H2O + 4e- -> 4OH-)

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