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(Ebook) Statics and Mechanics of Materials SI 1st Edition by Russell C Hibbeler ISBN 0131290118 9780131290112

  • SKU: EBN-1378996
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Authors:Russell C. Hibbeler
Pages:792 pages.
Year:2004
Editon:2
Publisher:Prentice Hall Singapore
Language:english
File Size:50.48 MB
Format:pdf
ISBNS:9780131290112, 0131290118
Categories: Ebooks

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(Ebook) Statics and Mechanics of Materials SI 1st Edition by Russell C Hibbeler ISBN 0131290118 9780131290112

(Ebook) Statics and Mechanics of Materials SI 1st Edition by Russell C Hibbeler - Ebook PDF Instant Download/Delivery: 0131290118, 9780131290112
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ISBN 10: 0131290118
ISBN 13: 9780131290112
Author: Russell C Hibbeler

Master two essential subjects in engineering mechanics -- statics and mechanics of materials -- with the rigorous, complete, and integrated treatment found in STATICS AND MECHANICS OF MATERIALS. This book helps readers establish a strong foundation for further study in mechanics that is essential for mechanical, structural, civil, biomedical, petroleum, nuclear, aeronautical, and aerospace engineers. The authors present numerous practical problems based on real structures, using state-of-the-art graphics, photographs, and detailed drawings of free-body diagrams. All example problems and end-of-chapter problem follow a comprehensive, organized, and systematic Four-Step Problem-Solving Approach to help readers strengthen important problem-solving skills and gain new insight into methods for dissecting and solving problems. The free website also contains nearly 200 FE-type review problems to help prepare for success on the FE Exams.

(Ebook) Statics and Mechanics of Materials SI 1st Table of contents:

Chapter 1: Introduction
1.1 Fundamental Concepts: Rigid and Deformable Bodies
1.2 Newton's Laws of Motion and Gravitation
1.3 Vectors and Scalars
1.4 Systems of Units and Conversion Factors
1.5 Accuracy, Approximations, and Significant Figures
1.6 Using a Four-Step Problem-Solving Approach
Chapter Summary and Review
Problems

Chapter 2: Forces, Moments, Resultants
2.1 Forces: 2D, 3D
2.2 Moments and Couples: 2D, 3D
Chapter Summary and Review
Problems

Chapter 3: Equilibrium of Components and Rigid Bodies
3.1 Introduction
3.2 Free-Body Diagrams
3.3 Equilibrium in 2D and 3D
3.4 Dry Friction
Chapter Summary and Review
Problems

Chapter 4: Structural Applications
4.1 Introduction
4.2 Plane Trusses
4.3 Space Trusses
4.4 Frames and Machines
Chapter Summary and Review
Problems

Chapter 5: Centroids, Center of Mass, and Moments of Inertia
5.1 Introduction
5.2 Centroids of Areas, Lines, and Volumes
5.3 Centroids of Composite Bodies
5.4 Center of Mass and Center of Gravity
5.5 Theorems of Pappus
5.6 Moments of Inertia of Plane Areas and Composite Areas
5.7 Rotation of Axes for Moments of Inertia
5.8 Principal Axes and Principal Moments of Inertia
Chapter Summary and Review
Problems

Chapter 6: Internal Effects in Bars, Shafts, Beams, and Frames
6.1 Introduction
6.2 Bars with Axial Loads
6.3 Shafts with Torsional Moments
6.4 Beams and Frames with Transverse Loads and Applied Moments
Chapter Summary and Review
Problems

Chapter 7: Tension, Compression, and Shear
7.1 Introduction to Mechanics of Materials
7.2 Normal Stress and Strain
7.3 Mechanical Properties of Materials
7.4 Elasticity, Plasticity, and Creep
7.5 Linear Elasticity, Hooke’s Law, and Poisson's Ratio
7.6 Shear Stress and Strain
7.7 Allowable Stresses and Allowable Loads
7.8 Design for Axial Loads and Direct Shear
Chapter Summary and Review
Problems

Chapter 8: Axially Loaded Members
8.1 Introduction
8.2 Changes in Lengths of Axially Loaded Members
8.3 Changes in Lengths under Nonuniform Conditions
8.4 Statically Indeterminate Structures
8.5 Thermal Effects, Misfits, and Prestrains
8.6 Stresses on Inclined Sections
Chapter Summary and Review
Problems

Chapter 9: Torsion
9.1 Introduction
9.2 Torsional Deformations of a Circular Bar
9.3 Circular Bars of Linearly Elastic Materials
9.4 Nonuniform Torsion
9.5 Stresses and Strains in Pure Shear
9.6 Relationship between Moduli of Elasticity E and G
9.7 Transmission of Power by Circular Shafts
9.8 Statically Indeterminate Torsional Members
9.9 Torsion of Noncircular Prismatic Shafts
Chapter Summary and Review
Problems

Chapter 10: Stresses in Beams (Basic Topics)
10.1 Introduction
10.2 Pure Bending and Nonuniform Bending
10.3 Curvature of a Beam
10.4 Longitudinal Strains in Beams
10.5 Normal Stresses in Beams (Linearly Elastic Materials)
10.7 Shear Stresses in Beams of Rectangular Cross Section
10.8 Shear Stresses in Beams of Circular Cross Section
10.9 Shear Stresses in the Webs of Beams with Flanges
10.10 Composite Beams
10.11 Bending of Unsymmetric Beams
Chapter Summary and Review
Problems

Chapter 11: Analysis of Stress and Strain
11.1 Introduction
11.2 Plane Stress
11.3 Principal Stresses and Maximum Shear Stresses
11.4 Mohr's Circle for Plane Stress
11.5 Hooke's Law for Plane Stress
11.6 Triaxial Stress
11.7 Plane Strain
Chapter Summary and Review
Problems

Chapter 12: Applications of Plane Stress
12.1 Introduction
12.2 Spherical Pressure Vessels
12.3 Cylindrical Pressure Vessels
12.4 Combined Loadings
Chapter Summary and Review
Problems

Chapter 13: Deflections of Beams
13.1 Introduction
13.2 Differential Equations of the Deflection Curve
13.3 Deflections by Integration of the Bending-Moment Equation
13.4 Deflections by Integration of the Shear-Force and Load Equations
13.5 Deflections by Method of Superposition
13.6 Statically Indeterminate Beams
Chapter Summary and Review
Problems

Chapter 14: Columns
14.1 Introduction
14.2 Buckling and Stability
14.3 Columns with Pinned Ends
14.4 Columns with Other Support Conditions
14.5 Columns with Eccentric Axial Loads
14.6 The Secant Formula for Columns

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