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Variational Techniques For Elliptic Partial Differential Equations Theoretical Tools And Advanced Applications Franciscojavier Sayas Thomas S Brown Matthew E Hassell

  • SKU: BELL-10483094
Variational Techniques For Elliptic Partial Differential Equations Theoretical Tools And Advanced Applications Franciscojavier Sayas Thomas S Brown Matthew E Hassell
$ 31.00 $ 45.00 (-31%)

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Variational Techniques For Elliptic Partial Differential Equations Theoretical Tools And Advanced Applications Franciscojavier Sayas Thomas S Brown Matthew E Hassell instant download after payment.

Publisher: CRC Press
File Extension: PDF
File size: 2.68 MB
Author: Francisco-Javier Sayas; Thomas S. Brown; Matthew E. Hassell
ISBN: 9781138580886, 1138580880
Language: English
Year: 2019

Product desciption

Variational Techniques For Elliptic Partial Differential Equations Theoretical Tools And Advanced Applications Franciscojavier Sayas Thomas S Brown Matthew E Hassell by Francisco-javier Sayas; Thomas S. Brown; Matthew E. Hassell 9781138580886, 1138580880 instant download after payment.

Variational Techniques for Elliptic Partial Differential Equations, intended for graduate students studying applied math, analysis, and/or numerical analysis, provides the necessary tools to understand the structure and solvability of elliptic partial differential equations. Beginning with the necessary definitions and theorems from distribution theory, the book gradually builds the functional analytic framework for studying elliptic PDE using variational formulations. Rather than introducing all of the prerequisites in the first chapters, it is the introduction of new problems which motivates the development of the associated analytical tools. In this way the student who is encountering this material for the first time will be aware of exactly what theory is needed, and for which problems.
Features
A detailed and rigorous development of the theory of Sobolev spaces on Lipschitz domains, including the trace operator and the normal component of vector fields
An integration of functional analysis concepts involving Hilbert spaces and the problems which can be solved with these concepts, rather than separating the two
Introduction to the analytical tools needed for physical problems of interest like time-harmonic waves, Stokes and Darcy flow, surface differential equations, Maxwell cavity problems, etc.
A variety of problems which serve to reinforce and expand upon the material in each chapter, including applications in fluid and solid mechanics

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