Multidisciplinary mathematical modelling : applications of mathematics to the real world / Francesc Font, Tim G. Myers, editors.
2021
QA401
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Details
Title
Multidisciplinary mathematical modelling : applications of mathematics to the real world / Francesc Font, Tim G. Myers, editors.
ISBN
9783030642723 (electronic bk.)
3030642720 (electronic bk.)
9783030642716
3030642720 (electronic bk.)
9783030642716
Published
Cham : Springer, [2021]
Language
English
Description
1 online resource (x, 89 pages) : illustrations (chiefly color)
Item Number
10.1007/978-3-030-64272-3 doi
Call Number
QA401
Dewey Decimal Classification
511/.8
Summary
This book presents a selection of the talks resulting from research carried out by different groups at the Centre de Recerca Matemàtica and presented at the International Congress on Industrial and Applied Mathematics, held in Valencia in 2019. The various chapters describe a wide variety of topics: cancer modelling, carbon capture by adsorption, nanoscale diffusion and complex systems to predict earthquakes. These mathematical studies were specifically aided via collaborations with biomedical engineers, physicists and chemists. The book is addressed to researchers in all of these areas as well as in general mathematical modelling.
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Access limited to authorized users.
Source of Description
Online resource; title from PDF title page (SpringerLink, viewed April 23, 2021).
Added Author
Font, Francesc, editor.
Myers, Tim G., editor.
Myers, Tim G., editor.
Added Meeting Name
International Conference on Industrial and Applied Mathematics (2019 : Valencia, Spain)
Series
SEMA SIMAI Springer series ; v. 11.
SEMA SIMAI Springer series. ICIAM 2019 SEMA SIMAI Springer series.
SEMA SIMAI Springer series. ICIAM 2019 SEMA SIMAI Springer series.
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Table of Contents
C. Penella et al., Spatiotemporal dynamics of cancer phenotypic quasispecies under targeted therapy
M. Hennessy and T. Myers, Guyer-Krumhansl heat conduction in thermoreflectance experiments
F. Font et al., A mathematical model of carbon capture by adsorption
C. Fanelli, Diffusion processes at nanoscale
V. Navas-Portella et al., Maximum likelihood estimation of power-law exponents for testing universality in complex systems.
M. Hennessy and T. Myers, Guyer-Krumhansl heat conduction in thermoreflectance experiments
F. Font et al., A mathematical model of carbon capture by adsorption
C. Fanelli, Diffusion processes at nanoscale
V. Navas-Portella et al., Maximum likelihood estimation of power-law exponents for testing universality in complex systems.