(i) Fe²⁺ \(→\) Fe (Reduction) with E° = -0.441 V = +0.441 V (Given standard electrode potentials (E°) :- E°Fe/Fe²⁺ = -E°Fe²⁺/Fe° = +0.441 V)
(ii) 2Fe³⁺ \(→\) 2Fe²⁺ (Reduction) with E° = 0.771 V
Overall Reaction:
Fe + 2Fe³⁺ \(→\) 3Fe²⁺
Cell Potential (E°cell):
E°cell = +0.441 V + 0.771 V = 1.212 V
So, the correct option is (C): 1.212 V
A sphere of radius R is cut from a larger solid sphere of radius 2R as shown in the figure. The ratio of the moment of inertia of the smaller sphere to that of the rest part of the sphere about the Y-axis is :
Predict the major product $ P $ in the following sequence of reactions:
(i) HBr, benzoyl peroxide
(ii) KCN
(iii) Na(Hg), $C_{2}H_{5}OH$
AB is a part of an electrical circuit (see figure). The potential difference \(V_A - V_B\), at the instant when current \(i = 2\) A and is increasing at a rate of 1 amp/second is:
An electrochemical cell is a device that is used to create electrical energy through the chemical reactions which are involved in it. The electrical energy supplied to electrochemical cells is used to smooth the chemical reactions. In the electrochemical cell, the involved devices have the ability to convert the chemical energy to electrical energy or vice-versa.