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Book
Some remarks on the horizontal line method
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Year: 1980 Publisher: Bonn Universität Bonn. Sonderforschungsbereich 72

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On some special functions of mathematical physics and their relation to spectral theory
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Year: 1984 Publisher: Bonn Universität Bonn. Sonderforschungsbereich 72

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Ein vereinheitlichter Zugang für eine Klasse linearer Wellenausbreitungs-Phänomene
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Year: 1981 Publisher: Bonn Universität Bonn. Sonderforschungsbereich 72

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On convergence and error estimates for the horizontal line method applied to Maxwell's initial boundary value problem in anisotropic, inhomogeneous media
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Year: 1980 Publisher: Bonn Universität Bonn. Sonderforschungsbereich 72

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Potentialtheorie auf Riemannschen Mannigfaltigkeiten mit nicht-glattem Rand
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Year: 1980 Publisher: Bonn Universität Bonn. Sonderforschungsbereich 72

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Hilbert space approach to some classical transforms
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ISBN: 0470212748 9780470212745 Year: 1989 Volume: 196 Publisher: New York Longman Scientific & Technical


Book
On the convergence of the finite element approximation of eigenfrequences and eigenvalues to Maxwell's boundary value problem
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Year: 1980 Publisher: Bonn Universität Bonn. Sonderforschungsbereich 72

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Error estimates for the finite element approximation to a Maxwell-type boundary value problem
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Year: 1980 Publisher: Bonn Universität Bonn. Sonderforschungsbereich 72

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A Primer for a Secret Shortcut to PDEs of Mathematical Physics
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ISBN: 3030473333 3030473325 Year: 2020 Publisher: Cham : Springer International Publishing : Imprint: Birkhäuser,

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This book presents a concise introduction to a unified Hilbert space approach to the mathematical modelling of physical phenomena which has been developed over recent years by Picard and his co-workers. The main focus is on time-dependent partial differential equations with a particular structure in the Hilbert space setting that ensures well-posedness and causality, two essential properties of any reasonable model in mathematical physics or engineering. As a unique feature, this powerful tool for tackling time-dependent partial differential equations is subsequently applied to many equations. By means of illustrative examples, from the straightforward to the more complex, the authors show that many of the classical models in mathematical physics as well as more recent models of novel materials and interactions are covered, or can be restructured to be covered, by this unified Hilbert space approach. The reader should require only a basic foundation in the theory of Hilbert spaces and operators therein. For convenience, however, some of the more technical background requirements are covered in detail in the appendix. The theory is kept as elementary as possible, making the material suitable for a senior undergraduate or master’s level course. In addition, researchers in a variety of fields whose work involves partial differential equations and applied operator theory will also greatly benefit from this approach to structuring their mathematical models in order that the general theory can be applied to ensure the essential properties of well-posedness and causality.


Digital
A Primer for a Secret Shortcut to PDEs of Mathematical Physics
Authors: --- --- ---
ISBN: 9783030473334 Year: 2020 Publisher: Cham Springer International Publishing :Imprint: Birkhäuser

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This book presents a concise introduction to a unified Hilbert space approach to the mathematical modelling of physical phenomena which has been developed over recent years by Picard and his co-workers. The main focus is on time-dependent partial differential equations with a particular structure in the Hilbert space setting that ensures well-posedness and causality, two essential properties of any reasonable model in mathematical physics or engineering. As a unique feature, this powerful tool for tackling time-dependent partial differential equations is subsequently applied to many equations. By means of illustrative examples, from the straightforward to the more complex, the authors show that many of the classical models in mathematical physics as well as more recent models of novel materials and interactions are covered, or can be restructured to be covered, by this unified Hilbert space approach. The reader should require only a basic foundation in the theory of Hilbert spaces and operators therein. For convenience, however, some of the more technical background requirements are covered in detail in the appendix. The theory is kept as elementary as possible, making the material suitable for a senior undergraduate or master’s level course. In addition, researchers in a variety of fields whose work involves partial differential equations and applied operator theory will also greatly benefit from this approach to structuring their mathematical models in order that the general theory can be applied to ensure the essential properties of well-posedness and causality.

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