Essentials Of Materials Science And Engineering, Si Edition
Essentials Of Materials Science And Engineering, Si Edition
4th Edition
ISBN: 9781337629157
Author: Donald R. Askeland, Wendelin J. Wright
Publisher: Cengage Learning
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Chapter 18, Problem 18.9P
Interpretation Introduction

Interpretation:

The amount of copper added in 1000 mL of water to produce electrode potential of +0.32 V needs to be calculated.

Concept Introduction:

Electrode potential can be calculated by the Nernst equation,

  Ecell=E0cellRTnFlnQ

Where,

  Ecell =cell potential at non-standard state.

  E0cell = cell potential at standard state.

R = universal gas constant = 8.314

T = temperature

F = faradays constant

n = number of moles of electrons

Q = reaction quotient

Copper content in the cell can be calculated by Nernst equation

  E=E0+0.0592nlog(xCion)

Where,

E = electrode potential

  Cion = metal concentration

n = charge on metallic ion

  E0 = standard electrode potential

x = copper content

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