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Titlebook: Computational and Analytic Methods in Science and Engineering; Christian Constanda Book 2020 Springer Nature Switzerland AG 2020 CMMSE 201

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书目名称Computational and Analytic Methods in Science and Engineering
编辑Christian Constanda
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概述Collects papers presented at a special session of the 2019 CMMSE conference, reporting on new results in a variety of branches of pure and applied mathematics.Provides applications of analytic and com
图书封面Titlebook: Computational and Analytic Methods in Science and Engineering;  Christian Constanda Book 2020 Springer Nature Switzerland AG 2020 CMMSE 201
描述This contributed volume collects papers presented at a special session of the conference Computational and Mathematical Methods in Science and Engineering (CMMSE) held in Cadiz, Spain from June 30 - July 6, 2019. Covering the applications of integral methods to scientific developments in a variety of fields, ranging from pure analysis to petroleum engineering, the chapters in this volume present new results in both pure and applied mathematics. Written by well-known researchers in their respective disciplines, each chapter shares a common methodology based on a combination of analytic and computational tools. This approach makes the collection a valuable, multidisciplinary reference on how mathematics can be applied to various real-world processes and phenomena. .Computational and Analytic Methods in Science and Engineering. will be ideal for applied mathematicians, physicists, and research engineers..
出版日期Book 2020
关键词CMMSE 2019; Analytic methods math; Computational methods; Neumann eigenvalues; Angular neutron flux; Boun
版次1
doihttps://doi.org/10.1007/978-3-030-48186-5
isbn_softcover978-3-030-48188-9
isbn_ebook978-3-030-48186-5
copyrightSpringer Nature Switzerland AG 2020
The information of publication is updating

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https://doi.org/10.1007/978-94-009-3729-1ction and energy) fitted by a parametrisation representation for the solution of the stationary Boltzmann equation. The best fit is then validated by the Boltzmann equation and the quality of the approximate solution is evaluated. We present the energy projection of the angular flux and a qualitative error analysis of the found solution.
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Mathematics and Its Applicationsndary conditions is described and an efficient algorithm for computing the interior transmission eigenvalues is proposed. Finally, extensive numerical results for a variety of two-dimensional scatterers are presented to show the validity of the proposed scheme.
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On a Parametric Representation of the Angular Neutron Flux in the Energy Range from 1 eV to 10 MeV,ction and energy) fitted by a parametrisation representation for the solution of the stationary Boltzmann equation. The best fit is then validated by the Boltzmann equation and the quality of the approximate solution is evaluated. We present the energy projection of the angular flux and a qualitative error analysis of the found solution.
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,A Boundary Integral Equation Formulation for Advection–Diffusion–Reaction Problems with Point Sourcesent work and analytical results shows good agreement as well as stability for a wide range of Peclet numbers. The dispersion concentration profile caused by a point source is simulated in a rectangular domain and for a set of different Peclet numbers.
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