Mathematical Biophysics

Lieferzeit: Lieferbar innerhalb 14 Tagen

106,99 

Biological and Medical Physics, Biomedical Engineering

ISBN: 148997783X
ISBN 13: 9781489977830
Autor: Rubin, Andrew/Lomonosov Moscow State University
Verlag: Springer Verlag GmbH
Umfang: xv, 273 S., 107 s/w Illustr., 43 farbige Illustr., 273 p. 150 illus., 43 illus. in color.
Erscheinungsdatum: 23.08.2016
Auflage: 1/2014
Produktform: Kartoniert
Einband: Kartoniert

This book presents concise descriptions and analysis of the classical and modern models used in mathematical biophysics. The authors ask the question „what new information can be provided by the models that cannot be obtained directly from experimental data?“ Actively developing fields such as regulatory mechanisms in cells and subcellular systems and electron transport and energy transport in membranes are addressed together with more classical topics such as metabolic processes, nerve conduction and heart activity, chemical kinetics, population dynamics, and photosynthesis. The main approach is to describe biological processes using different mathematical approaches necessary to reveal characteristic features and properties of simulated systems. With the emergence of powerful mathematics software packages such as MAPLE, Mathematica, Mathcad, and MatLab, these methodologies are now accessible to a wide audience. – Provides succinct but authoritative coverage of a broad array of biophysical topics and models Written by authors at Moscow State University with its strong tradition in mathematics and biophysics Scope, coverage, and length make the book highly suitable for use in a onesemester course at the senior undergraduate/graduate level

Artikelnummer: 9673374 Kategorie:

Beschreibung

This book presents concise descriptions and analysis of the classical and modern models used in mathematical biophysics. The authors ask the question "what new information can be provided by the models that cannot be obtained directly from experimental data?" Actively developing fields such as regulatory mechanisms in cells and subcellular systems and electron transport and energy transport in membranes are addressed together with more classical topics such as metabolic processes, nerve conduction and heart activity, chemical kinetics, population dynamics, and photosynthesis. The main approach is to describe biological processes using different mathematical approaches necessary to reveal characteristic features and properties of simulated systems. With the emergence of powerful mathematics software packages such as MAPLE, Mathematica, Mathcad, and MatLab, these methodologies are now accessible to a wide audience.

Herstellerkennzeichnung:


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E-Mail: juergen.hartmann@springer.com

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