(a) Conductivity of 0.01 mol L−1 solution of CH3COOH
=3.905×10−5 S cm−1
=3.905×10−3 S m−1
Concentration =0.001 mol L−1
=1000×0.001 mol m−3
=1 mol m−3
Molar conductivity, ∧m=KC
∧m=3.905×10−3 S m−11 mol m−3
∧m=3.905×10−3 S m2 mol−1
Limiting molar conductivity of CH3COOH, ∧∘m
=λ∘(CH3COO−)+λ∘(H+)
=349.6 S cm2 mol−1+40.9 S cm2 mol−1
=390.5 S cm2 mol−1
=3.905×10−2 S m2 mol−1
Degree of dissociation (α)=∧m∧∘m
α=3.905×10−3 S m2 mol−13.905×10−2 S m2 mol−1
α=0.1
(b) The arrangement which converts chemical energy of a redox reaction into electrical energy is called electrochemical cell. If external potential applied becomes greater than E∘cell of electrochemical cell, then the reaction in the cell starts in opposite direction.