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Digital simulation in electrochemistry
~
Britz, Dieter.
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Digital simulation in electrochemistry
Record Type:
Electronic resources : Monograph/item
Title/Author:
Digital simulation in electrochemistry/ by Dieter Britz, Jorg Strutwolf.
Author:
Britz, Dieter.
other author:
Strutwolf, Jorg.
Published:
Cham :Springer International Publishing : : 2016.,
Description:
xv, 492 p. :ill., digital ;24 cm.
[NT 15003449]:
Introduction -- Basic Equations -- Approximations to Derivatives -- Ordinary Differential Equations -- The Explicit Method -- Boundary Conditions -- Arbitrary Intervals -- The Commonly Used Implicit Methods -- Other Methods -- Adsorption -- Uncompensated Resistance and Capacitance -- Two-Dimensional Systems -- Migration -- Convection -- Performance -- Programming -- Simulation Packages -- Appendices: Some Mathematical Proofs -- Useful Procedures -- Example Programs.
Contained By:
Springer eBooks
Subject:
Electrochemistry - Computer simulation. -
Online resource:
http://dx.doi.org/10.1007/978-3-319-30292-8
ISBN:
9783319302928
Digital simulation in electrochemistry
Britz, Dieter.
Digital simulation in electrochemistry
[electronic resource] /by Dieter Britz, Jorg Strutwolf. - 4th ed. - Cham :Springer International Publishing :2016. - xv, 492 p. :ill., digital ;24 cm. - Monographs in electrochemistry,1865-1836. - Monographs in electrochemistry..
Introduction -- Basic Equations -- Approximations to Derivatives -- Ordinary Differential Equations -- The Explicit Method -- Boundary Conditions -- Arbitrary Intervals -- The Commonly Used Implicit Methods -- Other Methods -- Adsorption -- Uncompensated Resistance and Capacitance -- Two-Dimensional Systems -- Migration -- Convection -- Performance -- Programming -- Simulation Packages -- Appendices: Some Mathematical Proofs -- Useful Procedures -- Example Programs.
This book explains how the partial differential equations (pdes) in electroanalytical chemistry can be solved numerically. It guides the reader through the topic in a very didactic way, by first introducing and discussing the basic equations along with some model systems as test cases systematically. Then it outlines basic numerical approximations for derivatives and techniques for the numerical solution of ordinary differential equations. Finally, more complicated methods for approaching the pdes are derived. The authors describe major implicit methods in detail and show how to handle homogeneous chemical reactions, even including coupled and nonlinear cases. On this basis, more advanced techniques are briefly sketched and some of the commercially available programs are discussed. In this way the reader is systematically guided and can learn the tools for approaching his own electrochemical simulation problems. This new fourth edition has been carefully revised, updated and extended compared to the previous edition (Lecture Notes in Physics Vol. 666) It contains new material describing migration effects, as well as arrays of ultramicroelectrodes. It is thus the most comprehensive and didactic introduction to the topic of electrochemical simulation.
ISBN: 9783319302928
Standard No.: 10.1007/978-3-319-30292-8doiSubjects--Topical Terms:
2194773
Electrochemistry
--Computer simulation.
LC Class. No.: QD555.5
Dewey Class. No.: 541.370285
Digital simulation in electrochemistry
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Introduction -- Basic Equations -- Approximations to Derivatives -- Ordinary Differential Equations -- The Explicit Method -- Boundary Conditions -- Arbitrary Intervals -- The Commonly Used Implicit Methods -- Other Methods -- Adsorption -- Uncompensated Resistance and Capacitance -- Two-Dimensional Systems -- Migration -- Convection -- Performance -- Programming -- Simulation Packages -- Appendices: Some Mathematical Proofs -- Useful Procedures -- Example Programs.
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This book explains how the partial differential equations (pdes) in electroanalytical chemistry can be solved numerically. It guides the reader through the topic in a very didactic way, by first introducing and discussing the basic equations along with some model systems as test cases systematically. Then it outlines basic numerical approximations for derivatives and techniques for the numerical solution of ordinary differential equations. Finally, more complicated methods for approaching the pdes are derived. The authors describe major implicit methods in detail and show how to handle homogeneous chemical reactions, even including coupled and nonlinear cases. On this basis, more advanced techniques are briefly sketched and some of the commercially available programs are discussed. In this way the reader is systematically guided and can learn the tools for approaching his own electrochemical simulation problems. This new fourth edition has been carefully revised, updated and extended compared to the previous edition (Lecture Notes in Physics Vol. 666) It contains new material describing migration effects, as well as arrays of ultramicroelectrodes. It is thus the most comprehensive and didactic introduction to the topic of electrochemical simulation.
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Chemistry and Materials Science (Springer-11644)
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電子資源
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EB QD555.5 .B862 2016
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