Electrolytic Cells
CHXII03:ELECTROCHEMISTRY

330218 How many faraday of electricity is required to produce \(10 \mathrm{~g}\) of calcium metal \(\left( {{\text{molar}}\,\,{\text{mass}} = 40 {\text{g}}\;{\text{mo}}{{\text{l}}^{ - 1}}} \right)\) from calcium ions?

1 \(1.5 \mathrm{~F}\)
2 \(2.0 \mathrm{~F}\)
3 \(0.50 \mathrm{~F}\)
4 \(1.0 \mathrm{~F}\)
CHXII03:ELECTROCHEMISTRY

330219 When 9.65 ampere current was passed for 1.0 hour into nitrobenzene in acidic medium, the amount of p-aminophenol produced is:

1 109.0 g
2 98.1 g
3 9.81 g
4 10.9 g
CHXII03:ELECTROCHEMISTRY

330220 When a quantity of electricity is passed through \(\mathrm{CuSO}_{4}\) solution, 0.16 g of copper gets deposited. If the same quantity of electricity is passed through acidulated water, then the volume of \(\mathrm{H}_{2}\) liberated at STP will be
(Given : At. wt. of \(\mathrm{Cu}=64\) )

1 \(4.0 \mathrm{~cm}^{3}\)
2 \(56 \mathrm{~cm}^{3}\)
3 \(604 \mathrm{~cm}^{3}\)
4 \(8.0 \mathrm{~cm}^{3}\)
CHXII03:ELECTROCHEMISTRY

330221 What is the SI unit for electrochemical equivalent?

1 \({\rm{J}}{{\rm{s}}^{{\rm{ - 1}}}}\)
2 \({\rm{J}}{{\rm{C}}^{{\rm{ - 1}}}}\)
3 \({\rm{kgC}}\)
4 \({\rm{kg}}{{\rm{C}}^{{\rm{ - 1}}}}\)
CHXII03:ELECTROCHEMISTRY

330218 How many faraday of electricity is required to produce \(10 \mathrm{~g}\) of calcium metal \(\left( {{\text{molar}}\,\,{\text{mass}} = 40 {\text{g}}\;{\text{mo}}{{\text{l}}^{ - 1}}} \right)\) from calcium ions?

1 \(1.5 \mathrm{~F}\)
2 \(2.0 \mathrm{~F}\)
3 \(0.50 \mathrm{~F}\)
4 \(1.0 \mathrm{~F}\)
CHXII03:ELECTROCHEMISTRY

330219 When 9.65 ampere current was passed for 1.0 hour into nitrobenzene in acidic medium, the amount of p-aminophenol produced is:

1 109.0 g
2 98.1 g
3 9.81 g
4 10.9 g
CHXII03:ELECTROCHEMISTRY

330220 When a quantity of electricity is passed through \(\mathrm{CuSO}_{4}\) solution, 0.16 g of copper gets deposited. If the same quantity of electricity is passed through acidulated water, then the volume of \(\mathrm{H}_{2}\) liberated at STP will be
(Given : At. wt. of \(\mathrm{Cu}=64\) )

1 \(4.0 \mathrm{~cm}^{3}\)
2 \(56 \mathrm{~cm}^{3}\)
3 \(604 \mathrm{~cm}^{3}\)
4 \(8.0 \mathrm{~cm}^{3}\)
CHXII03:ELECTROCHEMISTRY

330221 What is the SI unit for electrochemical equivalent?

1 \({\rm{J}}{{\rm{s}}^{{\rm{ - 1}}}}\)
2 \({\rm{J}}{{\rm{C}}^{{\rm{ - 1}}}}\)
3 \({\rm{kgC}}\)
4 \({\rm{kg}}{{\rm{C}}^{{\rm{ - 1}}}}\)
CHXII03:ELECTROCHEMISTRY

330218 How many faraday of electricity is required to produce \(10 \mathrm{~g}\) of calcium metal \(\left( {{\text{molar}}\,\,{\text{mass}} = 40 {\text{g}}\;{\text{mo}}{{\text{l}}^{ - 1}}} \right)\) from calcium ions?

1 \(1.5 \mathrm{~F}\)
2 \(2.0 \mathrm{~F}\)
3 \(0.50 \mathrm{~F}\)
4 \(1.0 \mathrm{~F}\)
CHXII03:ELECTROCHEMISTRY

330219 When 9.65 ampere current was passed for 1.0 hour into nitrobenzene in acidic medium, the amount of p-aminophenol produced is:

1 109.0 g
2 98.1 g
3 9.81 g
4 10.9 g
CHXII03:ELECTROCHEMISTRY

330220 When a quantity of electricity is passed through \(\mathrm{CuSO}_{4}\) solution, 0.16 g of copper gets deposited. If the same quantity of electricity is passed through acidulated water, then the volume of \(\mathrm{H}_{2}\) liberated at STP will be
(Given : At. wt. of \(\mathrm{Cu}=64\) )

1 \(4.0 \mathrm{~cm}^{3}\)
2 \(56 \mathrm{~cm}^{3}\)
3 \(604 \mathrm{~cm}^{3}\)
4 \(8.0 \mathrm{~cm}^{3}\)
CHXII03:ELECTROCHEMISTRY

330221 What is the SI unit for electrochemical equivalent?

1 \({\rm{J}}{{\rm{s}}^{{\rm{ - 1}}}}\)
2 \({\rm{J}}{{\rm{C}}^{{\rm{ - 1}}}}\)
3 \({\rm{kgC}}\)
4 \({\rm{kg}}{{\rm{C}}^{{\rm{ - 1}}}}\)
CHXII03:ELECTROCHEMISTRY

330218 How many faraday of electricity is required to produce \(10 \mathrm{~g}\) of calcium metal \(\left( {{\text{molar}}\,\,{\text{mass}} = 40 {\text{g}}\;{\text{mo}}{{\text{l}}^{ - 1}}} \right)\) from calcium ions?

1 \(1.5 \mathrm{~F}\)
2 \(2.0 \mathrm{~F}\)
3 \(0.50 \mathrm{~F}\)
4 \(1.0 \mathrm{~F}\)
CHXII03:ELECTROCHEMISTRY

330219 When 9.65 ampere current was passed for 1.0 hour into nitrobenzene in acidic medium, the amount of p-aminophenol produced is:

1 109.0 g
2 98.1 g
3 9.81 g
4 10.9 g
CHXII03:ELECTROCHEMISTRY

330220 When a quantity of electricity is passed through \(\mathrm{CuSO}_{4}\) solution, 0.16 g of copper gets deposited. If the same quantity of electricity is passed through acidulated water, then the volume of \(\mathrm{H}_{2}\) liberated at STP will be
(Given : At. wt. of \(\mathrm{Cu}=64\) )

1 \(4.0 \mathrm{~cm}^{3}\)
2 \(56 \mathrm{~cm}^{3}\)
3 \(604 \mathrm{~cm}^{3}\)
4 \(8.0 \mathrm{~cm}^{3}\)
CHXII03:ELECTROCHEMISTRY

330221 What is the SI unit for electrochemical equivalent?

1 \({\rm{J}}{{\rm{s}}^{{\rm{ - 1}}}}\)
2 \({\rm{J}}{{\rm{C}}^{{\rm{ - 1}}}}\)
3 \({\rm{kgC}}\)
4 \({\rm{kg}}{{\rm{C}}^{{\rm{ - 1}}}}\)