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Introduction to linear elasticity [4th ed.]

By: Gould, Phillip L.
Contributor(s): Feng, Yuan.
Publisher: Switzerland Springer 2018Edition: 4th ed.Description: xx, 384p.ISBN: 9783319738840.Subject(s): Mechanical engineering | ElasticityDDC classification: 531.3823 | G73i4 Summary: This augmented and updated fourth edition introduces a new complement of computational tools and examples for each chapter and continues to provide a grounding in the tensor-based theory of elasticity for students in mechanical, civil, aeronautical and biomedical engineering and materials and earth science. Professor Gould’s proven approach allows faculty to introduce this subject early on in an educational program, where students are able to understand and apply the basic notions of mechanics to stress analysis and move on to advanced work in continuum mechanics, plasticity, plate and shell theory, composite materials and finite element mechanics. With the introductory material on the use of MATLAB, students can apply this modern computational tool to solve classic elasticity problems. The detailed solutions of example problems using both analytical derivations and computational tools helps student to grasp the essence of elasticity and practical skills of applying the basic mechanics theorem.
List(s) this item appears in: New arrival September 17-23, 2018
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Item type Current location Collection Call number url Status Date due Barcode Item holds
Text Books Text Books PK Kelkar Library, IIT Kanpur
TEXT 531.3823 G73i4 (Browse shelf) Available A183832
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Browsing PK Kelkar Library, IIT Kanpur Shelves , Collection code: TEXT Close shelf browser
531.382 Sa11e3 Elasticity 531.382 Sa11e3 Elasticity 531.382 Sa11e3 Elasticity 531.3823 G73i4 Introduction to linear elasticity [4th ed.] 531.38230151 G455C Contact problems in the classical theory of elasticity 531.3825 L961p Plasticity theory 531.6 V59e Energy transfers in fluid flows

This augmented and updated fourth edition introduces a new complement of computational tools and examples for each chapter and continues to provide a grounding in the tensor-based theory of elasticity for students in mechanical, civil, aeronautical and biomedical engineering and materials and earth science. Professor Gould’s proven approach allows faculty to introduce this subject early on in an educational program, where students are able to understand and apply the basic notions of mechanics to stress analysis and move on to advanced work in continuum mechanics, plasticity, plate and shell theory, composite materials and finite element mechanics. With the introductory material on the use of MATLAB, students can apply this modern computational tool to solve classic elasticity problems. The detailed solutions of example problems using both analytical derivations and computational tools helps student to grasp the essence of elasticity and practical skills of applying the basic mechanics theorem.

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