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Handbook Of Differential Equations Stationary Partial Differential Equations Volume 3 1st Edition Michel Chipot

  • SKU: BELL-884562
Handbook Of Differential Equations Stationary Partial Differential Equations Volume 3 1st Edition Michel Chipot
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Handbook Of Differential Equations Stationary Partial Differential Equations Volume 3 1st Edition Michel Chipot instant download after payment.

Publisher: Elsevier, Elsevier B.V., North Holland
File Extension: PDF
File size: 3.09 MB
Pages: 631
Author: Michel Chipot, Pavel Quittner (Editors)
ISBN: 9780080463827, 9780444528469, 0444528466, 0080463827
Language: English
Year: 2006
Edition: 1
Volume: 3

Product desciption

Handbook Of Differential Equations Stationary Partial Differential Equations Volume 3 1st Edition Michel Chipot by Michel Chipot, Pavel Quittner (editors) 9780080463827, 9780444528469, 0444528466, 0080463827 instant download after payment.

Main subject categories: • Stationary partial differential equations • Differential equations • Partial differential equations • Elliptic Equations with Anisotropic Nonlinearity and Nonstandard Growth Conditions • A Handbook of Γ-Convergence • Bubbling in Nonlinear Elliptic Problems Near Criticality • Singular Elliptic and Parabolic Equations • Schauder-Type Estimates and Applications • The Dam Problem • Nonlinear Eigenvalue Problems for Higher-Order Model Equations

This handbook is volume III in a series devoted to stationary partial differential equations. Similarly as volumes I and II, it is a collection of self contained, state-of-the-art surveys written by well-known experts in the field.

The topics covered by this handbook include singular and higher order equations, problems near criticality, problems with anisotropic nonlinearities, dam problem, Γ-convergence and Schauder-type estimates. We hope that these surveys will be useful for both beginners and experts and speed up the progress of corresponding (rapidly developing and fascinating) areas of mathematics.

Key features: • Written by well-known experts in the field • Self-contained volume in series covering one of the most rapid developing topics in mathematics

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