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The emf of the cell, Pt|H2(1 atm),|H^+(0...

The emf of the cell, `Pt|H_2(1 atm),|H^+(0.1M,30ml)||Ag^+(0.8M)|Ag` is 0.9V. Calculate the emf when 40ml of 0.05 M NaOH is added to the anodic compartment

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The emf of the cell, Pt|H_(2)(1atm)|H^(+) (0.1M, 30mL)||Ag^(+) (0.8M)Ag is 0.9V . Calculate the emf when 40mL of 0.05M NaOH is added.

The emf of the cell Ag|AgI|CI(0.05M)||AgNO_(3)(0.05M)|Ag is 0.79 V. Calculate the solubility product of AgI.

The emf of the cell Ag|KI(0.05M)||AgNO_(3)(0.05M)|Ag is 0.788V . Calculate the solubility product of AgI .

The observed emf of the cell, Pt|H_(2) ("1 atm")|H^(+)(3xx10^(-4) M)||H^(+) (M_(1))|H_(2) ("1 atm")|Pt is 0.154 V. Calculate the value of M_(1) and pH of cathodic solution.

Voltage of the cell Pt, H_(2) (1atm)|HOCN(1.3 xx 10^(-3)M)||Ag^(+) (0.8M) |Ag(s) is 0.982V . Calculate the K_(a) for HOCN , neglect [H^(+)] because of oxidation of H_(2)(g) Ag^(+) +e^(-) rarr Ag(s) = 0.8V

The e.m.f of cell Ag|AgI_((s)),0.05MKI|| 0.05 M AgNO_(3)|Ag is 0.788 V . Calculate solubility product of AgI .

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