Notes on Time Decay and Scattering for Some Hyperbolic Problems

Notes on Time Decay and Scattering for Some Hyperbolic Problems
Author: Cathleen S. Morawetz
Publisher: SIAM
Total Pages: 86
Release: 1975-01-01
Genre: Mathematics
ISBN: 9781611970494

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Solutions of the wave equation or Maxwell's equations in boundary value and free space problems are analyzed. Hyperbolic systems in domains going off to infinity are studied. New results on Maxwell's equations and non-star shaped reflecting bodies are included.

NOTES ON TIME DECAY AND SCATTERING FOR SOME HYPERBOLIC PROBLEMS- LECTURES FROM A REGIONAL CONFERENCE ON EXTERIOR INITIAL BOUNDARY VALUE PROBLEMS FOR HYPERBOLIC DIFFERENTIAL EQUATIONS- REGIONAL CONFERENCE SERIES IN APPLIED MATHEMATICS- CONFERENCE BOARD OF MATHEMATICAL SCIENCES.

NOTES ON TIME DECAY AND SCATTERING FOR SOME HYPERBOLIC PROBLEMS- LECTURES FROM A REGIONAL CONFERENCE ON EXTERIOR INITIAL BOUNDARY VALUE PROBLEMS FOR HYPERBOLIC DIFFERENTIAL EQUATIONS- REGIONAL CONFERENCE SERIES IN APPLIED MATHEMATICS- CONFERENCE BOARD OF MATHEMATICAL SCIENCES.
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The Cahn–Hilliard Equation: Recent Advances and Applications

The Cahn–Hilliard Equation: Recent Advances and Applications
Author: Alain Miranville
Publisher: SIAM
Total Pages: 216
Release: 2019-09-09
Genre: Mathematics
ISBN: 1611975921

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This is the first book to present a detailed discussion of both classical and recent results on the popular Cahn–Hilliard equation and some of its variants. The focus is on mathematical analysis of Cahn–Hilliard models, with an emphasis on thermodynamically relevant logarithmic nonlinear terms, for which several questions are still open. Initially proposed in view of applications to materials science, the Cahn–Hilliard equation is now applied in many other areas, including image processing, biology, ecology, astronomy, and chemistry. In particular, the author addresses applications to image inpainting and tumor growth. Many chapters include open problems and directions for future research. The Cahn-Hilliard Equation: Recent Advances and Applications is intended for graduate students and researchers in applied mathematics, especially those interested in phase separation models and their generalizations and applications to other fields. Materials scientists also will find this text of interest.

Fast Direct Solvers for Elliptic PDEs

Fast Direct Solvers for Elliptic PDEs
Author: Per-Gunnar Martinsson
Publisher: SIAM
Total Pages: 332
Release: 2019-12-16
Genre: Mathematics
ISBN: 1611976049

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Fast solvers for elliptic PDEs form a pillar of scientific computing. They enable detailed and accurate simulations of electromagnetic fields, fluid flows, biochemical processes, and much more. This textbook provides an introduction to fast solvers from the point of view of integral equation formulations, which lead to unparalleled accuracy and speed in many applications. The focus is on fast algorithms for handling dense matrices that arise in the discretization of integral operators, such as the fast multipole method and fast direct solvers. While the emphasis is on techniques for dense matrices, the text also describes how similar techniques give rise to linear complexity algorithms for computing the inverse or the LU factorization of a sparse matrix resulting from the direct discretization of an elliptic PDE. This is the first textbook to detail the active field of fast direct solvers, introducing readers to modern linear algebraic techniques for accelerating computations, such as randomized algorithms, interpolative decompositions, and data-sparse hierarchical matrix representations. Written with an emphasis on mathematical intuition rather than theoretical details, it is richly illustrated and provides pseudocode for all key techniques. Fast Direct Solvers for Elliptic PDEs is appropriate for graduate students in applied mathematics and scientific computing, engineers and scientists looking for an accessible introduction to integral equation methods and fast solvers, and researchers in computational mathematics who want to quickly catch up on recent advances in randomized algorithms and techniques for working with data-sparse matrices.

The Stability of Dynamical Systems

The Stability of Dynamical Systems
Author: J. P. LaSalle
Publisher: SIAM
Total Pages: 81
Release: 1976-01-01
Genre: Difference equations
ISBN: 9781611970432

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An introduction to aspects of the theory of dynamial systems based on extensions of Liapunov's direct method. The main ideas and structure for the theory are presented for difference equations and for the analogous theory for ordinary differential equations and retarded functional differential equations. The latest results on invariance properties for non-autonomous time-varying systems processes are presented for difference and differential equations.

Nonlinear Water Waves with Applications to Wave-Current Interactions and Tsunamis

Nonlinear Water Waves with Applications to Wave-Current Interactions and Tsunamis
Author: Adrian Constantin
Publisher: SIAM
Total Pages: 325
Release: 2011-12-01
Genre: Mathematics
ISBN: 1611971861

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This overview of some of the main results and recent developments in nonlinear water waves presents fundamental aspects of the field and discusses several important topics of current research interest. It contains selected information about water-wave motion for which advanced mathematical study can be pursued, enabling readers to derive conclusions that explain observed phenomena to the greatest extent possible. The author discusses the underlying physical factors of such waves and explores the physical relevance of the mathematical results that are presented. The book is intended for mathematicians, physicists and engineers interested in the interplay between physical concepts and insights and the mathematical ideas and methods that are relevant to specific water-wave phenomena. The material is an expanded version of the author's lectures delivered at the NSF-CBMS Regional Research Conference in the Mathematical Sciences organized by the Mathematics Department of the University of Texas-Pan American in 2010.

The Radon Transform and Medical Imaging

The Radon Transform and Medical Imaging
Author: Peter Kuchment
Publisher: SIAM
Total Pages: 238
Release: 2014-03-20
Genre: Computers
ISBN: 1611973287

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This book surveys the main mathematical ideas and techniques behind some well-established imaging modalities such as X-ray CT and emission tomography, as well as a variety of newly developing coupled-physics or hybrid techniques, including thermoacoustic tomography. The Radon Transform and Medical Imaging emphasizes mathematical techniques and ideas arising across the spectrum of medical imaging modalities and explains important concepts concerning inversion, stability, incomplete data effects, the role of interior information, and other issues critical to all medical imaging methods. For nonexperts, the author provides appendices that cover background information on notation, Fourier analysis, geometric rays, and linear operators. The vast bibliography, with over 825 entries, directs readers to a wide array of additional information sources on medical imaging for further study.

Mathematical Models for Communicable Diseases

Mathematical Models for Communicable Diseases
Author: Fred Brauer
Publisher: SIAM
Total Pages: 279
Release: 2013-02-07
Genre: Mathematics
ISBN: 1611972418

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A self-contained and comprehensive guide to the mathematical modeling of disease transmission, appropriate for graduate students.

Quantile Processes with Statistical Applications

Quantile Processes with Statistical Applications
Author: Miklos Csorgo
Publisher: SIAM
Total Pages: 169
Release: 1983-01-01
Genre: Distribution (Probability theory)
ISBN: 9781611970289

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Provides a comprehensive theory of the approximations of quantile processes in light of recent advances, as well as some of their statistical applications.