Partial Differential Equations I Partial Differential Equations I
Applied Mathematical Sciences

Partial Differential Equations I

Basic Theory

    • 87,99 €
    • 87,99 €

Publisher Description

The first of three volumes on partial differential equations, this one introduces basic examples arising in continuum mechanics, electromagnetism, complex analysis and other areas, and develops a number of tools for their solution, in particular Fourier analysis, distribution theory, and Sobolev spaces. These tools are then applied to the treatment of basic problems in linear PDE, including the Laplace equation, heat equation, and wave equation, as well as more general elliptic, parabolic, and hyperbolic equations. The book is targeted at graduate students in mathematics and at professional mathematicians with an interest in partial differential equations, mathematical physics, differential geometry, harmonic analysis, and complex analysis.In this second edition, there are seven new sections including Sobolev spaces on rough domains, boundary layer phenomena for the heat equation, the space of pseudodifferential operators of harmonic oscillator type, and an index formula for elliptic systems of such operators. In addition, several other sections have been substantially rewritten, and numerous others polished to reflect insights obtained through the use of these books over time. Michael E. Taylor is a Professor of Mathematics at the University of North Carolina, Chapel Hill, NC.
Review of first edition:
“These volumes will be read by several generations of readers eager to learn the modern theory of partial differential equations of mathematical physics and the analysis in which this theory is rooted.”(SIAM Review, June 1998)

GENRE
Science & Nature
RELEASED
2010
29 October
LANGUAGE
EN
English
LENGTH
676
Pages
PUBLISHER
Springer New York
PROVIDER INFO
Springer Science & Business Media LLC
SIZE
16
MB
Partial Differential Equations II Partial Differential Equations II
2010
Partial Differential Equations III Partial Differential Equations III
2010
Partial Differential Equations II Partial Differential Equations II
2010
Partial Differential Equations III Partial Differential Equations III
2010
The Linear Ordering Problem The Linear Ordering Problem
2011
Transient Chaos Transient Chaos
2011
Topology, Geometry and Gauge fields Topology, Geometry and Gauge fields
2011
An Introduction to the Mathematical Theory of Inverse Problems An Introduction to the Mathematical Theory of Inverse Problems
2011