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 Multiple Choice QuestionsShort Answer Type

251. Define conductivity and molar conductivity for the solution of an electrolyte.
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252.

On the basis of the standard electrode potential values stated for acid solution. Predict whether Ti4+ species may be used to oxidise FeII to FeIII.
Reaction: E°/V TiIV + e → Ti3+ + 0.01
Fe3+ + e → Fe2+ + 0.77

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253. What are fuel cells? Write the electrode reactions of a fuel cell which uses the reaction of hydrogen with oxygen.
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254.

Predict the products of electrolysis obtained at the electrodes in each case when the electrodes used are of platinum.
(i) An aqueous solution of AgNO3.
(ii) An aqueous solution of H2SO4.


(i)
Reaction in solution
AgNO3               ↔     Ag +    +        NO3
H2O             ↔     H+       +        OH
Reaction at cathode
Ag+   +          e       →      Ag
Reaction at anode
Due to platinum electrode self of ionization of water will take place 
H2O   →     2H+    +        1/2O2(g)   +  2e
Hence Ag will deposit at cathode and O2 gas will generate at anode

(ii)
Reaction in solution
H2SO4                          ↔     2H +  +        SO42–
H2O             ↔     H+       +        OH
Reaction at cathode
H+      +          e       →      ½ H2
Reaction at anode
Due to platinum electrode self of ionization of water will take place 
H2O   →     2H+    +        1/2O2(g)   +  2e
Hence H2 gas will generate at cathode and O2 gas will generate at anode
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 Multiple Choice QuestionsLong Answer Type

255. Define the following terms: (i) Cathodic protection, (ii) Electrochemical series, (iii) Cell constant, (iv) Equivalent conductivity, (v) Strong and weak electrolytes.
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256. Explain the working of galvanic cell. How does the electrochemical cell differ from electrolytic cell?
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 Multiple Choice QuestionsShort Answer Type

257. What is normal hydrogen electrode? Discuss its uses.
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 Multiple Choice QuestionsLong Answer Type

258. What is corrosion? What are the factors which affect corrosion?
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259. Distinguish between: (a) Electrolytes and non-electrolytes, (b) Reduction potential and oxidation potential (c) Primary cells and secondary cells, (d) Specific conductivity and molar conductivity.
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260.

The conductivity of 0.01 M solution of acetic acid at 25°C is 1.63 x 10–4 s cm–1. Given:
Λ°m (HCl) = 426 s cm2 mol–1, Δ°m (Na AC) = 91.5 cm2 mol–1
Λ°m (NaCl) = 126.5 cm2 mol–1 Calculate:
(a) the molar conductivity of acetic acid
(b) the degree of dissociation of acetic acid.
(c) the dissociation constant.
 (d) the pH of 0.01 M solution of acetic acid.

 
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