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Birkhäuser
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Integral Methods in Science and Engineering

Computational and Analytic Aspects

  • Book
  • © 2011

Overview

  • Illustrates the application of integral methods to diverse problems in mathematics, physics, biology, and engineering
  • Chapters written by a diverse group of well-established scientists Applicable to a broad range of special subjects, including deformable structures, fluid dynamics, medical imaging, and energy analysis
  • Useful for an interdisciplinary audience of graduate students, researchers, and professionals across mathematics and the sciences
  • Includes supplementary material: sn.pub/extras

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Table of contents (37 chapters)

Keywords

About this book

An enormous array of problems encountered by scientists and engineers are based on the design of mathematical models using many different types of ordinary differential, partial differential, integral, and integro-differential equations. Accordingly, the solutions of these equations are of great interest to practitioners and to science in general. Presenting a wealth of cutting-edge research by a diverse group of experts in the field, Integral Methods in Science and Engineering: Computational and Analytic Aspects gives a vivid picture of both the development of theoretical integral techniques and their use in specific science and engineering problems.

This book will be valuable for researchers in applied mathematics, physics, and mechanical and electrical engineering. It will likewise be a useful study guide for graduate students in these disciplines, and for various other professionals who use integration as an essential technique in their work.

Editors and Affiliations

  • , Department of Mathematical and Computer, The University of Tulsa, Tulsa, USA

    Christian Constanda

  • School of Computing, Engineering, and Ma, University of Brighton, Brighton, United Kingdom

    Paul J. Harris

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