
Strength of Materials
Book Details:
• Author: M. Chakarborti
• Publisher: S.K. Kataria & Sons
• Edition: Reprint 2013
• Language: English
• Number of Pages: 1000
• Binding: Paperback
• Release Date: 01 January 2013
• ISBN: 9789350143759
Description:
This book is a comprehensive guide to strength of materials and structural mechanics, specially designed for civil and mechanical engineering students. Written by M. Chakarborti, the book explains the principles of stress analysis, structural behavior, and material mechanics in a clear and systematic manner.
The book covers important topics including stress and strain, elastic constants, strain energy, impact loading, centre of gravity, moment of inertia, analysis of framed structures, shear force and bending moment, bending and shearing stresses in beams, deflection of beams, cantilevers, fixed and continuous beams, columns and struts, torsion of shafts, springs, compound stresses, thin and thick cylinders, riveted and welded joints, mechanical testing of metals, curved beams, rotational stresses, unsymmetrical bending, and three-dimensional stress analysis.
With detailed explanations and well-organized chapters, this book serves as an excellent academic and reference resource for university studies, laboratory work, technical learning, and competitive examinations related to mechanics of materials and structural engineering.
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Description
Book Details:
• Author: M. Chakarborti
• Publisher: S.K. Kataria & Sons
• Edition: Reprint 2013
• Language: English
• Number of Pages: 1000
• Binding: Paperback
• Release Date: 01 January 2013
• ISBN: 9789350143759
Description:
This book is a comprehensive guide to strength of materials and structural mechanics, specially designed for civil and mechanical engineering students. Written by M. Chakarborti, the book explains the principles of stress analysis, structural behavior, and material mechanics in a clear and systematic manner.
The book covers important topics including stress and strain, elastic constants, strain energy, impact loading, centre of gravity, moment of inertia, analysis of framed structures, shear force and bending moment, bending and shearing stresses in beams, deflection of beams, cantilevers, fixed and continuous beams, columns and struts, torsion of shafts, springs, compound stresses, thin and thick cylinders, riveted and welded joints, mechanical testing of metals, curved beams, rotational stresses, unsymmetrical bending, and three-dimensional stress analysis.
With detailed explanations and well-organized chapters, this book serves as an excellent academic and reference resource for university studies, laboratory work, technical learning, and competitive examinations related to mechanics of materials and structural engineering.

















