Quantitative Chemical Analysis
Quantitative Chemical Analysis
9th Edition
ISBN: 9781464135385
Author: Daniel C. Harris
Publisher: W. H. Freeman
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Chapter 14, Problem 14.32P
Interpretation Introduction

Interpretation:

Eo value for the half-reaction has to be calculated.

Concept introduction:

Nernst equation can be used to determine the cell potential at any instant, the difference from the standard state.

E = E0.05916nlog[B]b[H+]m[A]a

Where:

E = cell potential under nonstandard conditions

Eo = cell potential under standard conditions
n = number of moles of electrons exchanged in the electrochemical reaction

Solubility product: Ksp It is defined as the product formed from mathematical product of its concentration of dissolved ion raised up to the power of their stoichiometric coefficient.

MyXz(s)yM(aq)Z++zX(aq)y-Ksp=[MZ+]y[Xy-]z

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All of the following are allowed energy levels except _. a) 3f b) 1s c) 3d d) 5p e) 6s
A student wants to make the following product in good yield from a single transformation step, starting from benzene. Add any organic reagents the student is missing on the left-hand side of the arrow, and any addition reagents that are necessary above or below the arrow. If this product can't be made in good yield with a single transformation step, check the box below the drawing area. Note for advanced students: you may assume that an excess of benzene is used as part of the reaction conditions. : ☐ + I X This product can't be made in a single transformation step.
Predict the major products of this organic reaction:

Chapter 14 Solutions

Quantitative Chemical Analysis

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