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Numerical Methods In Mechanics Of Materials 3rd Ed With Applications From Nano To Macro Scales Third Edition Boresi

  • SKU: BELL-6838434
Numerical Methods In Mechanics Of Materials 3rd Ed With Applications From Nano To Macro Scales Third Edition Boresi
$ 31.00 $ 45.00 (-31%)

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Numerical Methods In Mechanics Of Materials 3rd Ed With Applications From Nano To Macro Scales Third Edition Boresi instant download after payment.

Publisher: CRC Press
File Extension: PDF
File size: 30.63 MB
Pages: 332
Author: Boresi, Arthur Peter; Chong, Ken Pin; Lee, James D.; Saigal, Sunil
ISBN: 9781138719163, 9781315146010, 9781351380973, 9781351380980, 9781351380997, 1138719161, 1315146010, 1351380974, 1351380982
Language: English
Year: 2017
Edition: Third edition

Product desciption

Numerical Methods In Mechanics Of Materials 3rd Ed With Applications From Nano To Macro Scales Third Edition Boresi by Boresi, Arthur Peter; Chong, Ken Pin; Lee, James D.; Saigal, Sunil 9781138719163, 9781315146010, 9781351380973, 9781351380980, 9781351380997, 1138719161, 1315146010, 1351380974, 1351380982 instant download after payment.

In the dynamic digital age, the widespread use of computers has transformed engineering and science. A realistic and successful solution of an engineering problem usually begins with an accurate physical model of the problem and a proper understanding of the assumptions employed. With computers and appropriate software we can model and analyze complex physical systems and problems.

However, efficient and accurate use of numerical results obtained from computer programs requires considerable background and advanced working knowledge to avoid blunders and the blind acceptance of computer results. This book provides the background and knowledge necessary to avoid these pitfalls, especially the most commonly used numerical methods employed in the solution of physical problems. It offers an in-depth presentation of the numerical methods for scales from nano to macro in nine self-contained chapters with extensive problems and up-to-date references, covering:

  • Trends and new developments in simulation and computation
  • Weighted residuals methods
  • Finite difference methods
  • Finite element methods
  • Finite strip/layer/prism methods
  • Boundary element methods
  • Meshless methods
  • Molecular dynamics
  • Multiphysics problems
  • Multiscale methods

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