The equilibrium constant of given cell should be calculated and concentration of Fe 2+ ion should be calculated, when equal volume of 0 .75M solutions of Fe 2+ and Ag + are mixed. Concept introduction: Nernst equation: The relationship between standard cell potential and cell potential at non-standard conditions and the reaction quotient are given by Nernst equation it is, E cell = E° cell - 2 .303 RT nF logQ Where, E cell is cell potential E° cell is standard cell potential R is gas constant T is temperature Q is reaction quotient
The equilibrium constant of given cell should be calculated and concentration of Fe 2+ ion should be calculated, when equal volume of 0 .75M solutions of Fe 2+ and Ag + are mixed. Concept introduction: Nernst equation: The relationship between standard cell potential and cell potential at non-standard conditions and the reaction quotient are given by Nernst equation it is, E cell = E° cell - 2 .303 RT nF logQ Where, E cell is cell potential E° cell is standard cell potential R is gas constant T is temperature Q is reaction quotient
Solution Summary: The author explains how the equilibrium constant of a given cell should be calculated and the reaction quotient is given by Nernst equation.
The equilibrium constant of given cell should be calculated and concentration of Fe2+ ion should be calculated, when equal volume of 0.75M solutions of Fe2+ and Ag+ are mixed.
Concept introduction:
Nernst equation:
The relationship between standard cell potential and cell potential at non-standard conditions and the reaction quotient are given by Nernst equation it is,
The equilibrium constant of given cell should be calculated and concentration of Fe2+ ion should be calculated, when equal volume of 0.75M solutions of Fe2+ and Ag+ are mixed.
Concept introduction:
Nernst equation:
The relationship between standard cell potential and cell potential at non-standard conditions and the reaction quotient are given by Nernst equation it is,
In an electrolytic cell, the positive pole is always assumed to be on the right side of the battery notation. Is that correct?
In an electrolytic cell, the positive pole is always assumed to be on the right side of the battery. Is that correct?
Calculate the free energy of formation of 1 mol of Cu in cells where the electrolyte is 1 mol dm-3 Cu2+ in sulfate solution, pH 0. E° for the Cu2+/Cu pair in this medium is +142 mV versus ENH.Assume the anodic reaction is oxygen evolution.Data: EH2 = -0.059 pH (V) and EO2 = 1.230 - 0.059 pH (V); 2.3RT/F = 0.059 V
Chapter 19 Solutions
Student Solutions Manual for Ebbing/Gammon's General Chemistry, 11th
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Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell
Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell