Mechanics of materials / Archie Higdon, Edward Ohlsen, William B. Stiles, John A. Weese, William F. Riley.
By: Higdon, Archie.
Contributor(s): Ohlsen, Edward | Stiles, William B | Weese, John A | Riley, William F.
Material type: BookPublisher: [S.l.] : Wiley, 1985Edition: 4th ed.Description: 744 p. ; 24 cm.ISBN: 0471890448 (hardcover); 9780471890447 (hardcover).Online resources: Amazon.com Summary: Designed for a first course in the mechanics of deformable bodies, this classic work emphasizes fundamental principles, using numerous applications to demonstrate and develop logical procedural methods. Instead of deriving various formulas for all types of problems, it stresses the use of free-body diagrams and the equations of equilibruim, together with the geometry of the deformed body and the observed relationship between stress and strain, for the accurate analysis of the force system acting on a body.Item type | Current location | Call number | Status | Date due | Barcode | Item holds |
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Books |
Central Library, QUEST, Nawabshah
Welcome to the Central Library, QUEST, Nawabshah, Sindh, Pakistan |
620.1 HIG (Browse shelf) | Available | 10437 | ||
Books | Seminar Library, Mechanical Engg. | 620.1 HIG (Browse shelf) | Available | 10438 |
Total holds: 0
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620.1/9204223 Corrosion engineering handbook. | 620.1 BEE Vector mechanics for engineers : | 620.1 BEE Vector mechanics for engineers : | 620.1 HIG Mechanics of materials / | 620.1 KHU A Text Book of Engineering Mechanics: statics and dynamics | 620.1 KHU A Text Book of Engineering Mechanics: statics and dynamics | 620.1 KHU A Text Book of Engineering Mechanics: statics and dynamics |
Designed for a first course in the mechanics of deformable bodies, this classic work emphasizes fundamental principles, using numerous applications to demonstrate and develop logical procedural methods. Instead of deriving various formulas for all types of problems, it stresses the use of free-body diagrams and the equations of equilibruim, together with the geometry of the deformed body and the observed relationship between stress and strain, for the accurate analysis of the force system acting on a body.
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