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Currents in Industrial Mathematics =...
~
Neunzert, Helmut.
Currents in Industrial Mathematics = From Concepts to Research to Education /
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Currents in Industrial Mathematics/ edited by Helmut Neunzert, Dieter Prätzel-Wolters.
Reminder of title:
From Concepts to Research to Education /
other author:
Neunzert, Helmut.
Description:
VIII, 437 p. 170 illus., 137 illus. in color.online resource. :
Contained By:
Springer Nature eBook
Subject:
Applied mathematics. -
Online resource:
https://doi.org/10.1007/978-3-662-48258-2
ISBN:
9783662482582
Currents in Industrial Mathematics = From Concepts to Research to Education /
Currents in Industrial Mathematics
From Concepts to Research to Education /[electronic resource] :edited by Helmut Neunzert, Dieter Prätzel-Wolters. - 1st ed. 2015. - VIII, 437 p. 170 illus., 137 illus. in color.online resource.
Foreword -- Introduction -- Modeling -- Numerics -- Data Analysis -- Optimization processes in practice -- Virtual Production of Filaments and Fleeces -- Modeling and Simulation of Filtration Processes -- Maximal Material Yield in Gemstone Cutting -- Robust State Estimation of Complex Systems -- Option Pricing in Practice – Heston’s Stochastic Volatility Model -- Applied School Mathematics – Made in Kaiserslautern.
Mathematics has many branches: there are the pure, the applied, and the applicable; the theoretical and the practical. There is mathematics for school, for college, and for industry. All these belong to the same family and are bound together by a "mathematical way of thinking." Some mathematicians devote themselves entirely to the well being of this family by preserving it, developing it, and teaching it to the next generation. Others use the familial attributes to help outsiders by taking up their problems and transforming them into mathematical questions in order to solve them. The work of these mathematicians is thus problem driven, based on mathematical models, and oriented on the goal of offering practicable solutions. This second group is sizeable; its members include almost all college graduates working in industry, in the private sector, or in the Fraunhofer Institutes, for example. This group is hardly visible, however, and one seldom hears its voices either. This book remedies this situation by relating how the scientists of the first Fraunhofer Institute for Mathematics, the ITWM in Kaiserslautern, go about their daily work. In so doing, it illustrates how extraordinarily successful today's mathematics is in helping solve industrial problems and reveals what lies behind this success. Finally, it describes how this exciting field of problem-driven mathematics can be integrated into classroom instruction, thus helping to bring it the recognition it so richly deserves.
ISBN: 9783662482582
Standard No.: 10.1007/978-3-662-48258-2doiSubjects--Topical Terms:
1069907
Applied mathematics.
LC Class. No.: TA342-343
Dewey Class. No.: 003.3
Currents in Industrial Mathematics = From Concepts to Research to Education /
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Foreword -- Introduction -- Modeling -- Numerics -- Data Analysis -- Optimization processes in practice -- Virtual Production of Filaments and Fleeces -- Modeling and Simulation of Filtration Processes -- Maximal Material Yield in Gemstone Cutting -- Robust State Estimation of Complex Systems -- Option Pricing in Practice – Heston’s Stochastic Volatility Model -- Applied School Mathematics – Made in Kaiserslautern.
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Mathematics has many branches: there are the pure, the applied, and the applicable; the theoretical and the practical. There is mathematics for school, for college, and for industry. All these belong to the same family and are bound together by a "mathematical way of thinking." Some mathematicians devote themselves entirely to the well being of this family by preserving it, developing it, and teaching it to the next generation. Others use the familial attributes to help outsiders by taking up their problems and transforming them into mathematical questions in order to solve them. The work of these mathematicians is thus problem driven, based on mathematical models, and oriented on the goal of offering practicable solutions. This second group is sizeable; its members include almost all college graduates working in industry, in the private sector, or in the Fraunhofer Institutes, for example. This group is hardly visible, however, and one seldom hears its voices either. This book remedies this situation by relating how the scientists of the first Fraunhofer Institute for Mathematics, the ITWM in Kaiserslautern, go about their daily work. In so doing, it illustrates how extraordinarily successful today's mathematics is in helping solve industrial problems and reveals what lies behind this success. Finally, it describes how this exciting field of problem-driven mathematics can be integrated into classroom instruction, thus helping to bring it the recognition it so richly deserves.
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