img Leseprobe Leseprobe

Modelling Electroanalytical Experiments by the Integral Equation Method

Lesław K. Bieniasz

PDF
ca. 96,29
Amazon iTunes Thalia.de Weltbild.de Hugendubel Bücher.de ebook.de kobo Osiander Google Books Barnes&Noble bol.com Legimi yourbook.shop Kulturkaufhaus ebooks-center.de
* Affiliatelinks/Werbelinks
Hinweis: Affiliatelinks/Werbelinks
Links auf reinlesen.de sind sogenannte Affiliate-Links. Wenn du auf so einen Affiliate-Link klickst und über diesen Link einkaufst, bekommt reinlesen.de von dem betreffenden Online-Shop oder Anbieter eine Provision. Für dich verändert sich der Preis nicht.

Springer Berlin img Link Publisher

Naturwissenschaften, Medizin, Informatik, Technik / Physikalische Chemie

Beschreibung

This comprehensive presentation of the integral equation method as applied to electro-analytical experiments is suitable for electrochemists, mathematicians and industrial chemists. The discussion focuses on how integral equations can be derived for various kinds of electroanalytical models. The book begins with models independent of spatial coordinates, goes on to address models in one dimensional space geometry and ends with models dependent on two spatial coordinates. Bieniasz considers both semi-infinite and finite spatial domains as well as ways to deal with diffusion, convection, homogeneous reactions, adsorbed reactants and ohmic drops. Bieniasz also discusses mathematical characteristics of the integral equations in the wider context of integral equations known in mathematics. Part of the book is devoted to the solution methodology for the integral equations. As analytical solutions are rarely possible, attention is paid mostly to numerical methods and relevant software. This book includes examples taken from the literature and a thorough literature overview with emphasis on crucial aspects of the integral equation methodology.

Weitere Titel in dieser Kategorie
Cover Hydrogen Energy
Lalit Mohan Das
Cover Hydrogen Energy
Lalit Mohan Das

Kundenbewertungen

Schlagwörter

Finite Spatial Domains, Ohmic Drops, Convection-Diffusion, Laplace Transform Approach, Dropping Mercury Electrode, Rotating Disk Electrode, Convection Diffusion PDE, Uncomplicated Diffusion, Concentration-Flux Relationship, Non-Linear Homogeneous Reaction Kinetics