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Ionic Equilibria in Analytical Chemistry

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Cover of 'Ionic Equilibria in Analytical Chemistry'

Table of Contents

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    Book Overview
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    Chapter 1 Solvents—Composition of Solutions
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    Chapter 2 Thermodynamics and Equilibrium
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    Chapter 3 Activities and Activity Coefficients
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    Chapter 4 Definitions of Acids and Bases: Strength of Acids and Bases
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    Chapter 5 Calculations of pH Values in Aqueous Solutions
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    Chapter 6 Buffer Solutions
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    Chapter 7 Some General Points Concerning Titrations
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    Chapter 8 Neutralization or Acid-Base Indicators
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    Chapter 9 Acid-Base Titration Curves
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    Chapter 10 Acid–Base Titrations: Further Theoretical Studies
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    Chapter 11 Acid–Base Reactions and Chemical Analysis
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    Chapter 12 Generalities on Oxidation-Reduction
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    Chapter 13 Redox Reactions and Electrochemical Cells
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    Chapter 14 Predicting Redox Reactions
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    Chapter 15 Predicting Redox Reactions by Graphical Means
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    Chapter 16 Calculating Equilibrium Potentials of Solutions Containing Several Redox Couples
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    Chapter 17 A Study of Some Redox Titration Curves
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    Chapter 18 Oxidoreductimetry: Direct and Indirect Iodometries
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    Chapter 19 Iodometry in Alkaline Medium, Iodatometry, Periodimetry, and Bromometry
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    Chapter 20 Oxidizations with Permanganate, Dichromate, and Ceric Ions
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    Chapter 21 Some Applications of Redox Reactions in Qualitative Analysis
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    Chapter 22 General Definitions Concerning Complexes
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    Chapter 23 Some Elements Concerning the Chemistry of Complexes
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    Chapter 24 Stability of Complexes: Some Elements Concerning the Kinetics of Their Formation
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    Chapter 25 Superimposition of Varied Equilibria to Complexation Equilibria
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    Chapter 26 Conditional Stability Constants
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    Chapter 27 Complexometry I: Mercurimetry (Votocek–Dubsky’s Method)
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    Chapter 28 Complexometry II: Titrations with EDTA
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    Chapter 29 Complexometry III: Metal Cation Indicators and Types of EDTA Titrations
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    Chapter 30 Applications of the Formation of Complexes in Inorganic Analysis
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    Chapter 31 Applications of the Formation of Complexes in Organic Analysis
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    Chapter 32 Intrinsic, Ionic, and Total Solubilities; Solubility Product and Precipitation
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    Chapter 33 Dependence of the Solubility on the Solution’s Ionic Strength and on the Presence of Common Ions: Superimposition of Several Precipitation Equilibria
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    Chapter 34 Solubility and pH
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    Chapter 35 Precipitation and Complexation
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    Chapter 36 Theoretical Study of Some Precipitation Titration Curves
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    Chapter 37 Titrimetric Methods Involving a Precipitation
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    Chapter 38 Gravimetry by Precipitation
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    Chapter 39 Some Applications of the Precipitation Phenomenon in Inorganic and Organic Qualitative and Quantitative Analysis
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Title
Ionic Equilibria in Analytical Chemistry
Published by
Springer New York, March 2012
DOI 10.1007/978-1-4419-8382-4
ISBNs
978-1-4419-8381-7, 978-1-4419-8382-4
Authors

Burgot, Jean-Louis

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 202 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Russia 3 1%
Peru 1 <1%
Netherlands 1 <1%
Mexico 1 <1%
Iran, Islamic Republic of 1 <1%
Unknown 195 97%

Demographic breakdown

Readers by professional status Count As %
Student > Bachelor 48 24%
Student > Ph. D. Student 29 14%
Student > Master 21 10%
Researcher 18 9%
Other 11 5%
Other 35 17%
Unknown 40 20%
Readers by discipline Count As %
Chemistry 73 36%
Engineering 15 7%
Chemical Engineering 11 5%
Pharmacology, Toxicology and Pharmaceutical Science 8 4%
Materials Science 7 3%
Other 33 16%
Unknown 55 27%