Advanced Potentiometry

Potentiometric Titrations and Their Systematic Errors

Specificaties
Paperback, 350 blz. | Engels
Springer Netherlands | 2010
ISBN13: 9789048181483
Rubricering
Springer Netherlands 0e druk, 2010 9789048181483
Verwachte levertijd ongeveer 9 werkdagen

Samenvatting

"Advanced Potentiometry" details the accurate calculation of potentiometric titrations. Additional terms such as the ideal diffusion potential together with the contribution of activity factors furnish calculated stability constants which do not include systematic errors and thus present a complete and correct description of equilibrium processes. Moreover, serious systematic errors resulting from the recent use of curve-fitting computer programs are highlighted later in the text.

"Advanced Potentiometry" can advantageously be used by lecturers, researchers, PhD graduates and undergraduate students working in the fields of Solution Chemistry, Physical Chemistry, Inorganic Chemistry and Analytical Chemistry and Environmental Research.

Specificaties

ISBN13:9789048181483
Taal:Engels
Bindwijze:paperback
Aantal pagina's:350
Uitgever:Springer Netherlands
Druk:0

Inhoudsopgave

Preface 1. Introduction 2. Emf cells with mixtures of strong electrolytes and liquid junctions of the type AY ¦ AY + HY + BYz(B) 3. Determination of the ionic molar conductivities in mixtures of the strong electrolytes HClO4 + NaClO4 + Cd(ClO4)2 4. Studies on emf cells where complex formation takes place using liquid junctions of the type AY ¦ AY + HY + BYz(B) + AyL and - log10 [H+] 7 5. Estimation of the total potential anomalies and the determination of the equilibrium constants in emf cells where every kind of complex can be present 6. On emf titrations proposed for the determination of some interaction coefficients 7. Emf titrations proposed for the determination of certain transport numbers 8. Studies on emf cells where strong complexes are formed using liquid junctions of the type AY ¦ AY + BYz(B) + HY + AyL at [Y-] = C M, constant, and - log10 [H+] 7

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        Advanced Potentiometry