Harmonic and Applied Analysis

Harmonic and Applied Analysis
Title Harmonic and Applied Analysis PDF eBook
Author Filippo De Mari
Publisher Springer Nature
Pages 316
Release 2021-12-13
Genre Mathematics
ISBN 3030866645

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Deep connections exist between harmonic and applied analysis and the diverse yet connected topics of machine learning, data analysis, and imaging science. This volume explores these rapidly growing areas and features contributions presented at the second and third editions of the Summer Schools on Applied Harmonic Analysis, held at the University of Genova in 2017 and 2019. Each chapter offers an introduction to essential material and then demonstrates connections to more advanced research, with the aim of providing an accessible entrance for students and researchers. Topics covered include ill-posed problems; concentration inequalities; regularization and large-scale machine learning; unitarization of the radon transform on symmetric spaces; and proximal gradient methods for machine learning and imaging.

Electromagnetic Fields

Electromagnetic Fields
Title Electromagnetic Fields PDF eBook
Author Jean G. Van Bladel
Publisher John Wiley & Sons
Pages 1171
Release 2007-05-23
Genre Science
ISBN 0470124571

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Professor Jean Van Bladel, an eminent researcher and educator in fundamental electromagnetic theory and its application in electrical engineering, has updated and expanded his definitive text and reference on electromagnetic fields to twice its original content. This new edition incorporates the latest methods, theory, formulations, and applications that relate to today's technologies. With an emphasis on basic principles and a focus on electromagnetic formulation and analysis, Electromagnetic Fields, Second Edition includes detailed discussions of electrostatic fields, potential theory, propagation in waveguides and unbounded space, scattering by obstacles, penetration through apertures, and field behavior at high and low frequencies.

Multiscale Methods

Multiscale Methods
Title Multiscale Methods PDF eBook
Author G A Pavliotis
Publisher Springer Science & Business Media
Pages 314
Release 2008-02-19
Genre Mathematics
ISBN 0387738282

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This introduction to multiscale methods gives you a broad overview of the methods’ many uses and applications. The book begins by setting the theoretical foundations of the methods and then moves on to develop models and prove theorems. Extensive use of examples shows how to apply multiscale methods to solving a variety of problems. Exercises then enable you to build your own skills and put them into practice. Extensions and generalizations of the results presented in the book, as well as references to the literature, are provided in the Discussion and Bibliography section at the end of each chapter.With the exception of Chapter One, all chapters are supplemented with exercises.

Non-linear Elliptic Equations in Conformal Geometry

Non-linear Elliptic Equations in Conformal Geometry
Title Non-linear Elliptic Equations in Conformal Geometry PDF eBook
Author Sun-Yung A. Chang
Publisher European Mathematical Society
Pages 106
Release 2004
Genre Computers
ISBN 9783037190067

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Non-linear elliptic partial differential equations are an important tool in the study of Riemannian metrics in differential geometry, in particular for problems concerning the conformal change of metrics in Riemannian geometry. In recent years the role played by the second order semi-linear elliptic equations in the study of Gaussian curvature and scalar curvature has been extended to a family of fully non-linear elliptic equations associated with other symmetric functions of the Ricci tensor. A case of particular interest is the second symmetric function of the Ricci tensor in dimension four closely related to the Pfaffian. In these lectures, starting from the background material, the author reviews the problem of prescribing Gaussian curvature on compact surfaces. She then develops the analytic tools (e.g., higher order conformal invariant operators, Sobolev inequalities, blow-up analysis) in order to solve a fully nonlinear equation in prescribing the Chern-Gauss-Bonnet integrand on compact manifolds of dimension four. The material is suitable for graduate students and research mathematicians interested in geometry, topology, and differential equations.

Symposium on Engineering with Nuclear Explosives, January 14-16, 1970, Las Vegas, Nevada

Symposium on Engineering with Nuclear Explosives, January 14-16, 1970, Las Vegas, Nevada
Title Symposium on Engineering with Nuclear Explosives, January 14-16, 1970, Las Vegas, Nevada PDF eBook
Author
Publisher
Pages 878
Release 1970
Genre Nuclear engineering
ISBN

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Sponsored by the American Nuclear Society in cooperation with United States Atomic Energy Commission.

Nuclear Reactor Physics

Nuclear Reactor Physics
Title Nuclear Reactor Physics PDF eBook
Author Weston M. Stacey
Publisher John Wiley & Sons
Pages 737
Release 2007-06-18
Genre Science
ISBN 3527406794

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Nuclear reactor physics is the core discipline of nuclear engineering. Nuclear reactors now account for a significant portion of the electrical power generated worldwide, and new power reactors with improved fuel cycles are being developed. At the same time, the past few decades have seen an ever-increasing number of industrial, medical, military, and research applications for nuclear reactors. The second edition of this successful comprehensive textbook and reference on basic and advanced nuclear reactor physics has been completely updated, revised and enlarged to include the latest developments.

Fundamentals Of Theoretical Plasma Physics: Mathematical Description Of Plasma Waves

Fundamentals Of Theoretical Plasma Physics: Mathematical Description Of Plasma Waves
Title Fundamentals Of Theoretical Plasma Physics: Mathematical Description Of Plasma Waves PDF eBook
Author Hee J Lee
Publisher World Scientific
Pages 726
Release 2019-03-06
Genre Science
ISBN 9813276770

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This book is written as a senior undergraduate and graduate textbook of theoretical plasma physics; topics include Boltzmann equation, two-fluid equations, magnetohydrodynamics, Vlasov-Maxwell Plasma, absolute and convective instabilities, fundamental kinetic theory, Lenard-Balescu equation, electric fluctuation, plasma electrodynamics and causality, nonlinear waves, inverse scattering method, surface waves, and dusty plasma. It also includes special topics like parametric instabilities and kinetic theory of surface waves in a plasma slab.The development of theory is presented through gentle mathematical steps through easy and straightforward demonstration. The readers will be able to appreciate the beauty of mathematical analysis in connection with theoretical plasma physics.