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Multiscale Problems in the Life Sciences

Autor Jacek Banasiak, Vincenzo Capasso, Miroslaw Lachowicz, Jacek Miekisz
en Limba Engleză Paperback – 30 mai 2008
The aim of this volume that presents lectures given at a joint CIME and Banach Center Summer School, is to offer a broad presentation of a class of updated methods providing a mathematical framework for the development of a hierarchy of models of complex systems in the natural sciences, with a special attention to biology and medicine. Mastering complexity implies sharing different tools requiring much higher level of communication between different mathematical and scientific schools, for solving classes of problems of the same nature. Today more than ever, one of the most important challenges derives from the need to bridge parts of a system evolving at different time and space scales, especially with respect to computational affordability. As a result the content has a rather general character; the main role is played by stochastic processes, positive semigroups, asymptotic analysis, kinetic theory, continuum theory, and game theory.
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Specificații

ISBN-13: 9783540783602
ISBN-10: 3540783601
Pagini: 344
Ilustrații: XII, 330 p. 27 illus.
Dimensiuni: 155 x 235 x 19 mm
Greutate: 0.52 kg
Ediția:2008
Editura: Springer
Locul publicării:Berlin, Heidelberg, Germany

Public țintă

Research

Cuprins

Positivity in Natural Sciences.- Rescaling Stochastic Processes: Asymptotics.- Modelling Aspects of Cancer Growth: Insight from Mathematical and Numerical Analysis and Computational Simulation.- Lins Between Microscopic and Macroscopic Descriptions.- Evolutionary Game Theory and Population Dynamics.- Erratum.

Textul de pe ultima copertă

The aim of this volume that presents Lectures given at a joint CIME and Banach Center  Summer School, is to offer a broad presentation of a class of updated methods providing a mathematical framework for the development of a hierarchy of models of complex systems in the natural sciences, with a special attention to Biology and Medicine. Mastering complexity implies sharing different tools requiring much higher level of communication between different mathematical and scientific schools, for solving classes of problems of the same nature. Today more than ever, one of the most important challenges derives from the need to bridge parts of a system evolving at different time and space scales, especially with respect to computational affordability. As a result the content has a rather general character; the main role is played by stochastic processes, positive semigroups, asymptotic analysis, kinetic theory, continuum theory and game theory.

Caracteristici

Includes supplementary material: sn.pub/extras