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Schaum's outline of theory and problems of statistics and mechanics of materials / William A Nash

By: Nash, William A.
Series: Schaum's outline series. Publisher: New York : McGraw Hill, c1992Description: vi, 282 p. : ill. ; 28 cm.ISBN: 0070458960 (pbk.); 9780070458963 (pbk.).Other title: Statics and mechanics of materials [Cover title].Subject(s): Statics -- Outlines, syllabi, etc | Statics -- Problems, exercises, etc | Strength of materials -- Problems, exercises, etc | Strength of materials -- Outlines, syllabi, etcDDC classification: 620.112
Contents:
Pt. 1. Mechanics of Rigid Bodies. 1. Properties of Force and Force Systems. 2. Statics: Equilibria of Rigid Bodies. 3. The Effects of Friction. 4. Equilibria of Bodies Subject to Three-Dimensional Force Systems. 5. Trusses. 6. Centroids, Moments of Inertia, and Distributed Loads. 7. Axial Force, Twisting Moment, Shearing Force, and Bending Moment. -- Pt. II. Mechanics of deformable bodies. 8. Stress and Strain Analysis. 9. Uniform Tension, Compression, and Shear. 10. Thin Rings and Shells of Revolution. 11. Torsion. 12. Stresses in Beams. 13. Beam Deflections. 14. Combined Loadings: Theories of Failure and Design Methodology. 15. Columns.
Item type Current location Call number Copy number Status Notes Date due Barcode Remark
Main Collection TU External Storage-LCS
620.112 NAS (Browse shelf) 1 Available SOExx,07017,03,GR 5000084970 Please fill up online form at https://taylorslibrary.taylors.edu.my/services/external_storage1

Pt. 1. Mechanics of Rigid Bodies. 1. Properties of Force and Force Systems. 2. Statics: Equilibria of Rigid Bodies. 3. The Effects of Friction. 4. Equilibria of Bodies Subject to Three-Dimensional Force Systems. 5. Trusses. 6. Centroids, Moments of Inertia, and Distributed Loads. 7. Axial Force, Twisting Moment, Shearing Force, and Bending Moment. -- Pt. II. Mechanics of deformable bodies. 8. Stress and Strain Analysis. 9. Uniform Tension, Compression, and Shear. 10. Thin Rings and Shells of Revolution. 11. Torsion. 12. Stresses in Beams. 13. Beam Deflections. 14. Combined Loadings: Theories of Failure and Design Methodology. 15. Columns.