Mechanics of materials / R.C. Hibbeler.

By: Hibbeler, R. CContributor(s): Fan, S. C [editor.] | Hibbeler, R. C. Mechanics of materialsMaterial type: TextTextLanguage: English Publication details: Singapore ; New York : Prentice Hall, 2011Edition: 6th ed. in SI Units / SI conversion by S. C. Fan (Nanyang Technological University)Description: xxii, 866 pages : color illustrations ; 24 cmContent type: 36 ISBN: 9789810685096; 9810685092Subject(s): Materials | Materials -- Problems, exercises, etc | Mechanics, Applied | Strength of materials | Structural analysis (Engineering)DDC classification: 620.112 LOC classification: TA405 | .M516 2011
Contents:
Stress -- Strain -- Mechanical properties of materials -- Axial load -- Torsion -- Bending -- Transverse shear -- Combined loading -- Stress transformation -- Strain transformation -- Design of beams and shafts -- Deflection of beams and shats -- Buckling of columns -- Energy methods.
Summary: This text provides a clear, comprehensive presentation of both the theory and applications of mechanics of materials. It looks at the physical behaviour of materials under load, then proceeds to model this behaviour to development theory.
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Holdings
Item type Current library Home library Call number Status Date due Barcode Item holds
Books Books School of Engineering and Technology
School of Engineering and Technology
620.112 HRM (Browse shelf (Opens below)) Available 2420
Books Books School of Engineering and Technology
School of Engineering and Technology
620.112 HRM (Browse shelf (Opens below)) Available 2439
Total holds: 0

Includes index.

Previous edition: 2008.

Stress -- Strain -- Mechanical properties of materials -- Axial load -- Torsion -- Bending -- Transverse shear -- Combined loading -- Stress transformation -- Strain transformation -- Design of beams and shafts -- Deflection of beams and shats -- Buckling of columns -- Energy methods.

This text provides a clear, comprehensive presentation of both the theory and applications of mechanics of materials. It looks at the physical behaviour of materials under load, then proceeds to model this behaviour to development theory.

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