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Robust Numerical Methods for Singularly Perturbed Differential Equations - Convection-Diffusion-Reaction and Flow Problems... Robust Numerical Methods for Singularly Perturbed Differential Equations - Convection-Diffusion-Reaction and Flow Problems (Paperback, Softcover reprint of hardcover 2nd ed. 2008)
Hans-Goerg Roos, Martin Stynes, Lutz Tobiska
R4,842 Discovery Miles 48 420 Ships in 10 - 15 working days

The analysis of singular perturbed di?erential equations began early in the twentieth century, when approximate solutions were constructed from asy- totic expansions. (Preliminary attempts appear in the nineteenth century - see[vD94].)Thistechniquehas?ourishedsincethemid-1960sanditsprincipal ideas and methods are described in several textbooks; nevertheless, asy- totic expansions may be impossible to construct or may fail to simplify the given problem and then numerical approximations are often the only option. Thesystematicstudyofnumericalmethodsforsingularperturbationpr- lems started somewhat later - in the 1970s. From this time onwards the - search frontier has steadily expanded, but the exposition of new developments in the analysis of these numerical methods has not received its due attention. The ?rst textbook that concentrated on this analysis was [DMS80], which collected various results for ordinary di?erential equations. But after 1980 no further textbook appeared until 1996, when three books were published: Miller et al. [MOS96], which specializes in upwind ?nite di?erence methods on Shishkin meshes, Morton's book [Mor96], which is a general introduction to numerical methods for convection-di? usion problems with an emphasis on the cell-vertex ?nite volume method, and [RST96], the ?rst edition of the present book. Nevertheless many methods and techniques that are important today, especially for partial di?erential equations, were developed after 1996.

Robust Numerical Methods for Singularly Perturbed Differential Equations - Convection-Diffusion-Reaction and Flow Problems... Robust Numerical Methods for Singularly Perturbed Differential Equations - Convection-Diffusion-Reaction and Flow Problems (Hardcover, 2nd ed. 2008)
Hans-Goerg Roos, Martin Stynes, Lutz Tobiska
R4,874 Discovery Miles 48 740 Ships in 10 - 15 working days

The analysis of singular perturbed di?erential equations began early in the twentieth century, when approximate solutions were constructed from asy- totic expansions. (Preliminary attempts appear in the nineteenth century - see[vD94].)Thistechniquehas?ourishedsincethemid-1960sanditsprincipal ideas and methods are described in several textbooks; nevertheless, asy- totic expansions may be impossible to construct or may fail to simplify the given problem and then numerical approximations are often the only option. Thesystematicstudyofnumericalmethodsforsingularperturbationpr- lems started somewhat later - in the 1970s. From this time onwards the - search frontier has steadily expanded, but the exposition of new developments in the analysis of these numerical methods has not received its due attention. The ?rst textbook that concentrated on this analysis was [DMS80], which collected various results for ordinary di?erential equations. But after 1980 no further textbook appeared until 1996, when three books were published: Miller et al. [MOS96], which specializes in upwind ?nite di?erence methods on Shishkin meshes, Morton's book [Mor96], which is a general introduction to numerical methods for convection-di? usion problems with an emphasis on the cell-vertex ?nite volume method, and [RST96], the ?rst edition of the present book. Nevertheless many methods and techniques that are important today, especially for partial di?erential equations, were developed after 1996.

Numerical Treatment of Partial Differential Equations (Paperback, 2007 ed.): Christian Grossmann, Hans-Goerg Roos, Martin Stynes Numerical Treatment of Partial Differential Equations (Paperback, 2007 ed.)
Christian Grossmann, Hans-Goerg Roos, Martin Stynes
R2,803 Discovery Miles 28 030 Ships in 10 - 15 working days

This book deals with discretization techniques for partial differential equations of elliptic, parabolic and hyperbolic type. It provides an introduction to the main principles of discretization and gives a presentation of the ideas and analysis of advanced numerical methods in the area. The book is mainly dedicated to finite element methods, but it also discusses difference methods and finite volume techniques.

Coverage offers analytical tools, properties of discretization techniques and hints to algorithmic aspects. It also guides readers to current developments in research.

Numerische Mathematik - Das Grundwissen fur jedermann (German, Paperback, 1999 ed.): Hans-Goerg Roos, Hubert Schwetlick Numerische Mathematik - Das Grundwissen fur jedermann (German, Paperback, 1999 ed.)
Hans-Goerg Roos, Hubert Schwetlick
R902 Discovery Miles 9 020 Ships in 10 - 15 working days

Dieses Lehrbuch ist eine verstandlich geschriebene, kompakte Einfuhrung in die numerische Mathematik. Es wendet sich an all jene, die numerische Verfahren zur Computersimulation realer Prozesse mittels mathematischer Modelle einsetzen und die Grundgedanken der dazu geeigneten Verfahren verstehen wollen. Schwerpunkte bilden numerische Verfahren fur lineare und nichtlineare Gleichungssysteme, Eigenwertaufgaben, Interpolation und Approximation, numerische Differentiation und Integration sowie fur Anfangswertaufgaben bei gewohnlichen und Randwertaufgaben bei partiellen Differentialgleichungen. Ausserdem geben die Autoren, die uber langjahrige Lehr- und Forschungserfahrungen verfugen, zahlreiche Hinweise auf moderne vertiefende Literatur und aktuelle verfugbare Software

Die Finite Elemente-Methode fur Anfanger 4e (German, Paperback, 4th Edition): Herbert Goering, Lutz Tobiska, Hans-Goerg Roos Die Finite Elemente-Methode fur Anfanger 4e (German, Paperback, 4th Edition)
Herbert Goering, Lutz Tobiska, Hans-Goerg Roos
R908 Discovery Miles 9 080 Out of stock

Die Finite-Elemente-Methode ist eine grundlegende mathematische Technik zur Behandlung von Differentialgleichungs- und Variationsproblemen, die
in Physik und Mechanik, im Bau- und Ingenieurwesen sowie in Elektrotechnik und Mechatronik auftreten.
Das vorliegende Buch ist die vierte Auflage des bewahrten Standardwerks der drei Autoren. Es ist speziell fur Naturwissenschaftler und Ingenieure
geeignet, die die mathematischen Grundlagen der Methode kennenlernen wollen. Das Lehrbuch wurde grundlich uberarbeitet, zudem u.a. durch Hinweise auf unstetige Galerkin-Methoden und verschiedene Varianten von a posteriori Fehlerabschatzungen sowie Literatur- und Softwareverweise auf den aktuellen Stand gebracht.

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