Applied partial differential equations: a visual approach by Peter A. Markowich.

Markowich, Peter A.
Call Number
515.353 M34A
Author
Markowich, Peter A.
Title
Applied partial differential equations: a visual approach by Peter A. Markowich.
Publication
Berlin : Springer, c2007.
Physical Description
ix, 206 p. : col. ill. ; 25 cm. + CD-ROM (4 3/4 in.)
Contents
Kinetic equations : from Newton to Boltzmann -- The Navier-Stokes and Euler equations : fluid and gas dynamics -- Granular material flows -- Chemotactic cell motion and biological pattern formation -- Semiconductor modeling -- Free boundary problems and phase transitions -- Reaction-diffusion equations : homogeneous and heterogeneous environments -- Optimal transportation and Monge-Amp�ere equations -- Wave equations -- Digital image processing and analysis : PDEs and variational tools -- Socio-economic modeling.
Subject
DIFFERENTIAL EQUATIONS, PARTIAL.
Multimedia
Total Ratings: 0
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$a Markowich, Peter A.
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$a Applied partial differential equations: $b a visual approach $c by Peter A. Markowich.
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$a Berlin : $b Springer, $c c2007.
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$a ix, 206 p. : $b col. ill. ; $c 25 cm. + $e CD-ROM (4 3/4 in.)
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$a Includes bibliographical references.
505
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$a Kinetic equations : from Newton to Boltzmann -- The Navier-Stokes and Euler equations : fluid and gas dynamics -- Granular material flows -- Chemotactic cell motion and biological pattern formation -- Semiconductor modeling -- Free boundary problems and phase transitions -- Reaction-diffusion equations : homogeneous and heterogeneous environments -- Optimal transportation and Monge-Amp�ere equations -- Wave equations -- Digital image processing and analysis : PDEs and variational tools -- Socio-economic modeling.
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$a DIFFERENTIAL EQUATIONS, PARTIAL.
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$3 Table of contents only $u http://www.loc.gov/catdir/toc/fy0707/2006936979.html
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Contents
Kinetic equations : from Newton to Boltzmann -- The Navier-Stokes and Euler equations : fluid and gas dynamics -- Granular material flows -- Chemotactic cell motion and biological pattern formation -- Semiconductor modeling -- Free boundary problems and phase transitions -- Reaction-diffusion equations : homogeneous and heterogeneous environments -- Optimal transportation and Monge-Amp�ere equations -- Wave equations -- Digital image processing and analysis : PDEs and variational tools -- Socio-economic modeling.
Subject
DIFFERENTIAL EQUATIONS, PARTIAL.
Multimedia