This is the softcover reprint of the very popular hardcover edition. This book deals with the numerical approximation of partial differential equations. Its scope is to provide a thorough illustration of numerical methods, carry out their stability and convergence analysis, derive error bounds, and discuss the algorithmic aspects relative to their implementation. A sound balancing of theoretical analysis, description of algorithms and discussion of applications is one of its main features. Many kinds of problems are addressed. A comprehensive theory of Galerkin method and its variants, as wel
Partial differential equations occur in a variety of forms in many different branches of Mathematica...
This volume gathers contributions from participants of the Introductory School and the IHP thematic ...
The numerical solution of ordinary differential equations will be the main topics discussed in the f...
This book deals with the numerical approximation of partial differential equations. Its scope is to ...
From Chapter 1: The purpose of these lectures is to present a set of straightforward numerical metho...
These lecture notes are devoted to the numerical solution of partial differential equations (PDEs). ...
This book is devoted to the study of partial differential equation problems both from the theoretica...
This volume is designed as an introduction to the concepts of modern numerical analysis as they appl...
A balanced guide to the essential techniques for solving elliptic partial differential equations Nu...
Polynomial interpolation methods are applied both to the approximation of functions and to the numer...
This thesis was submitted for the degree of Doctor of Philosophy and awarded by Brunel University.Th...
The book is suitable for advanced undergraduate and beginning graduate students of applied mathemati...
This volume gathers contributions from participants of the Introductory School and the IHP thematic ...
Praise for the First Edition "". . . outstandingly appealing with regard to its style, contents, con...
Approximation with respect to what is now known as the Chebyshev norm was proposed by Laplace (1799...
Partial differential equations occur in a variety of forms in many different branches of Mathematica...
This volume gathers contributions from participants of the Introductory School and the IHP thematic ...
The numerical solution of ordinary differential equations will be the main topics discussed in the f...
This book deals with the numerical approximation of partial differential equations. Its scope is to ...
From Chapter 1: The purpose of these lectures is to present a set of straightforward numerical metho...
These lecture notes are devoted to the numerical solution of partial differential equations (PDEs). ...
This book is devoted to the study of partial differential equation problems both from the theoretica...
This volume is designed as an introduction to the concepts of modern numerical analysis as they appl...
A balanced guide to the essential techniques for solving elliptic partial differential equations Nu...
Polynomial interpolation methods are applied both to the approximation of functions and to the numer...
This thesis was submitted for the degree of Doctor of Philosophy and awarded by Brunel University.Th...
The book is suitable for advanced undergraduate and beginning graduate students of applied mathemati...
This volume gathers contributions from participants of the Introductory School and the IHP thematic ...
Praise for the First Edition "". . . outstandingly appealing with regard to its style, contents, con...
Approximation with respect to what is now known as the Chebyshev norm was proposed by Laplace (1799...
Partial differential equations occur in a variety of forms in many different branches of Mathematica...
This volume gathers contributions from participants of the Introductory School and the IHP thematic ...
The numerical solution of ordinary differential equations will be the main topics discussed in the f...