The Resource Mathematical and numerical methods for partial differential equations : applications for engineering sciences, Joël Chaskalovic
Mathematical and numerical methods for partial differential equations : applications for engineering sciences, Joël Chaskalovic
Resource Information
The item Mathematical and numerical methods for partial differential equations : applications for engineering sciences, Joël Chaskalovic represents a specific, individual, material embodiment of a distinct intellectual or artistic creation found in University of Missouri Libraries.This item is available to borrow from 1 library branch.
Resource Information
The item Mathematical and numerical methods for partial differential equations : applications for engineering sciences, Joël Chaskalovic represents a specific, individual, material embodiment of a distinct intellectual or artistic creation found in University of Missouri Libraries.
This item is available to borrow from 1 library branch.
 Summary
 This selftutorial offers a concise yet thorough introduction into the mathematical analysis of approximation methods for partial differential equation. A particular emphasis is put on finite element methods. The unique approach first summarizes and outlines the finiteelement mathematics in general and then, in the second and major part, formulates problem examples that clearly demonstrate the techniques of functional analysis via numerous and diverse exercises. The solutions of the problems are given directly afterwards. Using this approach, the author motivates and encourages the reader to actively acquire the knowledge of finite element methods instead of passively absorbing the material, as in most standard textbooks. This English edition is based on the Finite Element Methods for Engineering Sciences by Joel Chaskalovic
 Language
 eng
 Extent
 xiv, 358 pages)
 Contents

 1. Applications of functional analysis in partial differential equations
 2. Finiteelement method
 3. Variational formulations of problems
 4. Finiteelement methods and standard differential problems
 5. Mechanics of deformable solids
 6. Strength of materials
 7. Nonlinear problems
 Isbn
 9783319035628
 Label
 Mathematical and numerical methods for partial differential equations : applications for engineering sciences
 Title
 Mathematical and numerical methods for partial differential equations
 Title remainder
 applications for engineering sciences
 Statement of responsibility
 Joël Chaskalovic
 Language
 eng
 Summary
 This selftutorial offers a concise yet thorough introduction into the mathematical analysis of approximation methods for partial differential equation. A particular emphasis is put on finite element methods. The unique approach first summarizes and outlines the finiteelement mathematics in general and then, in the second and major part, formulates problem examples that clearly demonstrate the techniques of functional analysis via numerous and diverse exercises. The solutions of the problems are given directly afterwards. Using this approach, the author motivates and encourages the reader to actively acquire the knowledge of finite element methods instead of passively absorbing the material, as in most standard textbooks. This English edition is based on the Finite Element Methods for Engineering Sciences by Joel Chaskalovic
 Cataloging source
 YDXCP
 http://library.link/vocab/creatorName
 Chaskalovic, J.
 Dewey number

 620.0
 518/.64
 Illustrations
 illustrations
 Index
 index present
 LC call number

 QA377
 TA330
 LC item number
 .C427 2014
 Literary form
 non fiction
 Nature of contents
 bibliography
 Series statement
 Mathematical Engineering,
 http://library.link/vocab/subjectName

 Differential equations, Partial
 Differential equations, Partial
 Finite element method
 Label
 Mathematical and numerical methods for partial differential equations : applications for engineering sciences, Joël Chaskalovic
 Bibliography note
 Includes bibliographical references and index
 Carrier category
 volume
 Carrier category code

 nc
 Carrier MARC source
 rdacarrier.
 Content category
 text
 Content type code

 txt
 Content type MARC source
 rdacontent.
 Contents
 1. Applications of functional analysis in partial differential equations  2. Finiteelement method  3. Variational formulations of problems  4. Finiteelement methods and standard differential problems  5. Mechanics of deformable solids  6. Strength of materials  7. Nonlinear problems
 Control code
 862101536
 Dimensions
 24 cm
 Extent
 xiv, 358 pages)
 Isbn
 9783319035628
 Lccn
 2013954568
 Media category
 unmediated
 Media MARC source
 rdamedia.
 Media type code

 n
 Other physical details
 illustrations
 System control number
 (OCoLC)862101536
 Label
 Mathematical and numerical methods for partial differential equations : applications for engineering sciences, Joël Chaskalovic
 Bibliography note
 Includes bibliographical references and index
 Carrier category
 volume
 Carrier category code

 nc
 Carrier MARC source
 rdacarrier.
 Content category
 text
 Content type code

 txt
 Content type MARC source
 rdacontent.
 Contents
 1. Applications of functional analysis in partial differential equations  2. Finiteelement method  3. Variational formulations of problems  4. Finiteelement methods and standard differential problems  5. Mechanics of deformable solids  6. Strength of materials  7. Nonlinear problems
 Control code
 862101536
 Dimensions
 24 cm
 Extent
 xiv, 358 pages)
 Isbn
 9783319035628
 Lccn
 2013954568
 Media category
 unmediated
 Media MARC source
 rdamedia.
 Media type code

 n
 Other physical details
 illustrations
 System control number
 (OCoLC)862101536
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<div class="citation" vocab="http://schema.org/"><i class="fa faexternallinksquare fafw"></i> Data from <span resource="http://link.library.missouri.edu/portal/Mathematicalandnumericalmethodsforpartial/elXtVJXbmA/" typeof="Book http://bibfra.me/vocab/lite/Item"><span property="name http://bibfra.me/vocab/lite/label"><a href="http://link.library.missouri.edu/portal/Mathematicalandnumericalmethodsforpartial/elXtVJXbmA/">Mathematical and numerical methods for partial differential equations : applications for engineering sciences, Joël Chaskalovic</a></span>  <span property="potentialAction" typeOf="OrganizeAction"><span property="agent" typeof="LibrarySystem http://library.link/vocab/LibrarySystem" resource="http://link.library.missouri.edu/"><span property="name http://bibfra.me/vocab/lite/label"><a property="url" href="http://link.library.missouri.edu/">University of Missouri Libraries</a></span></span></span></span></div>