Multicomponent and Multiscale Systems : Theory, Methods, and Applications in Engineering Hardback - 2015
by Juergen Geiser
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- Hardback
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Details
- Title Multicomponent and Multiscale Systems : Theory, Methods, and Applications in Engineering
- Author Juergen Geiser
- Binding Hardback
- Condition New
- Pages 325
- Volumes 1
- Language ENG
- Publisher Springer
- Publication date 2015-09-03
- Illustrated Yes
- Features Glossary, Illustrated
- Bookseller's Inventory # ria9783319151168_inp
- ISBN 9783319151168 / 3319151169
- Weight 1.47 lbs (0.67 kg)
- Dimensions 9.21 x 6.14 x 0.81 in (23.39 x 15.60 x 2.06 cm)
- Category Mathematics
- Dewey Decimal Code 003.3
- Quantity available 222
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From the publisher
From the rear cover
This book examines the latest research results from combined
multi-component and multi-scale explorations. It provides theory, considers underlying numerical methods, and presents brilliant
computational experimentation. Engineering computations featured in this monograph further offer particular interest to many researchers, engineers, and computational scientists working in frontier modeling and applications of multicomponent and multiscale problems. Professor Geiser gives specific attention to the aspects of decomposing and splitting delicate structures and controlling decomposition and the rationale behind many important applications of multi-component and multi-scale analysis. Multicomponent and Multiscale Systems: Theory, Methods, and Applications in Engineering also considers the question of why iterative methods can be powerful and more appropriate for well-balanced multiscale and multicomponent coupled nonlinear problems. The book is ideal for engineers and scientists working in theoretical and applied areas.
multi-component and multi-scale explorations. It provides theory, considers underlying numerical methods, and presents brilliant
computational experimentation. Engineering computations featured in this monograph further offer particular interest to many researchers, engineers, and computational scientists working in frontier modeling and applications of multicomponent and multiscale problems. Professor Geiser gives specific attention to the aspects of decomposing and splitting delicate structures and controlling decomposition and the rationale behind many important applications of multi-component and multi-scale analysis. Multicomponent and Multiscale Systems: Theory, Methods, and Applications in Engineering also considers the question of why iterative methods can be powerful and more appropriate for well-balanced multiscale and multicomponent coupled nonlinear problems. The book is ideal for engineers and scientists working in theoretical and applied areas.