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Language: English
Published by Springer (India) Private Limited, 2017
ISBN 10: 3319288318 ISBN 13: 9783319288314
Seller: Books Puddle, New York, NY, U.S.A.
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Language: English
Published by Springer (India) Private Limited, 2017
ISBN 10: 3319288318 ISBN 13: 9783319288314
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Language: English
Published by Springer (India) Private Limited, 2017
ISBN 10: 3319288318 ISBN 13: 9783319288314
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Seller: Ria Christie Collections, Uxbridge, United Kingdom
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Language: English
Published by Springer (India) Private Limited, 2018
ISBN 10: 3319804367 ISBN 13: 9783319804361
Seller: Books Puddle, New York, NY, U.S.A.
Condition: New. pp. XII, 243 54 illus., 39 illus. in color. Softcover reprint of the original 1st ed. 2017 edition NO-PA16APR2015-KAP.
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Condition: New. 2018. Paperback. . . . . .
Language: English
Published by Birkhauser Verlag AG, 2017
ISBN 10: 3319288318 ISBN 13: 9783319288314
Seller: Kennys Bookshop and Art Galleries Ltd., Galway, GY, Ireland
Condition: New. Editor(s): Vuik, Kees; Lahaye, Domenico; Tang, Jok. Series: Geosystems Mathematics. Num Pages: 243 pages, 15 black & white illustrations, 39 colour illustrations, biography. BIC Classification: PBF; PBKJ; PBKS. Category: (G) General (US: Trade). Dimension: 235 x 155. . . 2017. Hardback. . . . .
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Add to basketHardcover. Condition: Brand New. 243 pages. 9.00x6.00x0.75 inches. In Stock.
Language: English
Published by Springer International Publishing, Springer International Publishing, 2018
ISBN 10: 3319804367 ISBN 13: 9783319804361
Seller: AHA-BUCH GmbH, Einbeck, Germany
Taschenbuch. Condition: Neu. Druck auf Anfrage Neuware - Printed after ordering - This edited volume offers a state of the art overview of fast and robust solvers for the Helmholtz equation. The book consists of three parts:new developments and analysis in Helmholtz solvers, practical methods and implementations of Helmholtz solvers, and industrial applications.The Helmholtz equation appears in a wide range of science and engineering disciplines in which wave propagation is modeled. Examplesare: seismic inversion, ultrasone medical imaging, sonar detection of submarines, waves in harbours and many more. The partial differential equation looks simple but is hard to solve. In order to approximate the solution of the problem numerical methods are needed. First a discretization is done. Various methods can be used: (high order) Finite Difference Method, Finite Element Method, Discontinuous Galerkin Method and Boundary Element Method. The resulting linear system is large, where the size of the problem increases with increasing frequency. Due to higher frequencies the seismic images need to be more detailed and, therefore, lead to numerical problems of a larger scale. To solve these three dimensional problems fast and robust, iterative solvers are required. However for standard iterative methods the number of iterations to solve the system becomes too large. For these reason a number of new methods are developed to overcome this hurdle.The book is meant for researchers both from academia and industry and graduate students. A prerequisite is knowledge on partial differential equations and numerical linear algebra.
Language: English
Published by Springer International Publishing, 2017
ISBN 10: 3319288318 ISBN 13: 9783319288314
Seller: AHA-BUCH GmbH, Einbeck, Germany
Buch. Condition: Neu. Druck auf Anfrage Neuware - Printed after ordering - This edited volume offers a state of the art overview of fast and robust solvers for the Helmholtz equation. The book consists of three parts:new developments and analysis in Helmholtz solvers, practical methods and implementations of Helmholtz solvers, and industrial applications.The Helmholtz equation appears in a wide range of science and engineering disciplines in which wave propagation is modeled. Examplesare: seismic inversion, ultrasone medical imaging, sonar detection of submarines, waves in harbours and many more. The partial differential equation looks simple but is hard to solve. In order to approximate the solution of the problem numerical methods are needed. First a discretization is done. Various methods can be used: (high order) Finite Difference Method, Finite Element Method, Discontinuous Galerkin Method and Boundary Element Method. The resulting linear system is large, where the size of the problem increases with increasing frequency. Due to higher frequencies the seismic images need to be more detailed and, therefore, lead to numerical problems of a larger scale. To solve these three dimensional problems fast and robust, iterative solvers are required. However for standard iterative methods the number of iterations to solve the system becomes too large. For these reason a number of new methods are developed to overcome this hurdle.The book is meant for researchers both from academia and industry and graduate students. A prerequisite is knowledge on partial differential equations and numerical linear algebra.
Language: English
Published by Birkhauser Verlag AG, 2017
ISBN 10: 3319288318 ISBN 13: 9783319288314
Seller: Kennys Bookstore, Olney, MD, U.S.A.
Condition: New. Editor(s): Vuik, Kees; Lahaye, Domenico; Tang, Jok. Series: Geosystems Mathematics. Num Pages: 243 pages, 15 black & white illustrations, 39 colour illustrations, biography. BIC Classification: PBF; PBKJ; PBKS. Category: (G) General (US: Trade). Dimension: 235 x 155. . . 2017. Hardback. . . . . Books ship from the US and Ireland.
Seller: Kennys Bookstore, Olney, MD, U.S.A.
Condition: New. 2018. Paperback. . . . . . Books ship from the US and Ireland.
Language: English
Published by Springer International Publishing, Springer International Publishing Jul 2018, 2018
ISBN 10: 3319804367 ISBN 13: 9783319804361
Seller: buchversandmimpf2000, Emtmannsberg, BAYE, Germany
Taschenbuch. Condition: Neu. Neuware -This edited volume offers a state of the art overview of fast and robust solvers for the Helmholtz equation. The book consists of three parts:new developments and analysis in Helmholtz solvers, practical methods and implementations of Helmholtz solvers, and industrial applications.The Helmholtz equation appears in a wide range of science and engineering disciplines in which wave propagation is modeled. Examples are: seismic inversion, ultrasone medical imaging, sonar detection of submarines, waves in harbours and many more. The partial differential equation looks simple but is hard to solve. In order to approximate the solution of the problem numerical methods are needed. First a discretization is done. Various methods can be used: (high order) Finite Difference Method, Finite Element Method, Discontinuous Galerkin Method and Boundary Element Method. The resulting linear system is large, where the size of the problem increases with increasing frequency. Due to higher frequencies the seismic images need to be more detailed and, therefore, lead to numerical problems of a larger scale. To solve these three dimensional problems fast and robust, iterative solvers are required. However for standard iterative methods the number of iterations to solve the system becomes too large. For these reason a number of new methods are developed to overcome this hurdle.The book is meant for researchers both from academia and industry and graduate students. A prerequisite is knowledge on partial differential equations and numerical linear algebra.Springer Basel AG in Springer Science + Business Media, Heidelberger Platz 3, 14197 Berlin 256 pp. Englisch.
Language: English
Published by Springer International Publishing, Springer International Publishing Mär 2017, 2017
ISBN 10: 3319288318 ISBN 13: 9783319288314
Seller: buchversandmimpf2000, Emtmannsberg, BAYE, Germany
Buch. Condition: Neu. Neuware -This edited volume offers a state of the art overview of fast and robust solvers for the Helmholtz equation. The book consists of three parts:new developments and analysis in Helmholtz solvers, practical methods and implementations of Helmholtz solvers, and industrial applications.The Helmholtz equation appears in a wide range of science and engineering disciplines in which wave propagation is modeled. Examples are: seismic inversion, ultrasone medical imaging, sonar detection of submarines, waves in harbours and many more. The partial differential equation looks simple but is hard to solve. In order to approximate the solution of the problem numerical methods are needed. First a discretization is done. Various methods can be used: (high order) Finite Difference Method, Finite Element Method, Discontinuous Galerkin Method and Boundary Element Method. The resulting linear system is large, where the size of the problem increases with increasing frequency. Due to higher frequencies the seismic images need to be more detailed and, therefore, lead to numerical problems of a larger scale. To solve these three dimensional problems fast and robust, iterative solvers are required. However for standard iterative methods the number of iterations to solve the system becomes too large. For these reason a number of new methods are developed to overcome this hurdle.The book is meant for researchers both from academia and industry and graduate students. A prerequisite is knowledge on partial differential equations and numerical linear algebra.Springer Basel AG in Springer Science + Business Media, Heidelberger Platz 3, 14197 Berlin 256 pp. Englisch.
Condition: As New. Unread book in perfect condition.
Language: English
Published by Springer International Publishing, 2017
ISBN 10: 3319288318 ISBN 13: 9783319288314
Seller: Buchpark, Trebbin, Germany
Condition: Sehr gut. Zustand: Sehr gut | Seiten: 256 | Sprache: Englisch | Produktart: Bücher | This edited volume offers a state of the art overview of fast and robust solvers for the Helmholtz equation. The book consists of three parts:new developments and analysis in Helmholtz solvers, practical methods and implementations of Helmholtz solvers, and industrial applications.The Helmholtz equation appears in a wide range of science and engineering disciplines in which wave propagation is modeled. Examples are: seismic inversion, ultrasone medical imaging, sonar detection of submarines, waves in harbours and many more. The partial differential equation looks simple but is hard to solve. In order to approximate the solution of the problem numerical methods are needed. First a discretization is done. Various methods can be used: (high order) Finite Difference Method, Finite Element Method, Discontinuous Galerkin Method and Boundary Element Method. The resulting linear system is large, where the size of the problem increases with increasing frequency. Due to higher frequencies the seismic images need to be more detailed and, therefore, lead to numerical problems of a larger scale. To solve these three dimensional problems fast and robust, iterative solvers are required. However for standard iterative methods the number of iterations to solve the system becomes too large. For these reason a number of new methods are developed to overcome this hurdle.The book is meant for researchers both from academia and industry and graduate students. A prerequisite is knowledge on partial differential equations and numerical linear algebra.
Seller: Mispah books, Redhill, SURRE, United Kingdom
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Condition: New. pp. 510.