Solution Manual for Quantitative Chemical Analysis
Solution Manual for Quantitative Chemical Analysis
9th Edition
ISBN: 9781464175633
Author: Daniel Harris
Publisher: Palgrave Macmillan Higher Ed
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Chapter 12.5, Problem 4TY
Interpretation Introduction

Interpretation:

The pZn2+ should be calculated, after adding 30.0mL and 50.0mL of EDTA

Concept Information:

Conditional formation constant for EDTA titration with an auxiliary complexing agent:

In the reaction of metal with ligand, the equilibrium constant is called as formation constant or the stability constant.

MYn4-MYn++Y4-

The formation constant for above complex reaction is,

Kf=[MYn-4][Mn+][Y4-]

Where,

Kf is formation constant

[M+] is concentration of metal ion

[Y4-] is concentration of ligand

[MYn4-] is concentration of the acid

Degree of dissociation:

The ratio of mole of reactant that underwent to dissociating to mole of initial reactant is known as degree of dissociation.

In EDTA the degree of dissociation is,

αY4-=[Y4-][H6Y2+]+[H5Y+]+[H4Y]+[H3Y-]+[H2Y2-]+[H3Y3-]+[Y4-]=[Y4-][EDTA]

If pH is fixed, the αY4- is constant and Kf will be Kf'

The formation constantKf'=αY4-Kf=[MYn-4][Mn+][EDTA]

Where,

Kf' is the conditional formation constant

In the addition of auxiliary complexing agent, the pH of the solution varied and formation constant value also be varied it is,

Kf''=αMn+αY4-Kf

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Draw and show the full mechanism of how the molecule ((1E, 3E, 5E)-1-methoxyhepta-1,3,5-triene) is built using substitution and elimination reactions. You can start with an alkane of any carbon length with any number of leaving groups attached or with a alkoxide of any carbon length (conjugate base of an alcohol). Show each step and and explanation for each reaction. Also include why the reagents and solvents were picked and what other products can be expected.
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