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Determine the material properties required to prevent failure. Optimize designs for efficiency and safety. Highlights of the 3rd Edition Searching for "statics and mechanics of materials 3rd
The study of how solid bodies deform and fail under load (stress, strain, shear).
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| Topic Area | Hibbeler (3rd Edition) | Beer & Johnston (3rd Edition) | | :--- | :--- | :--- | | | | | | Fundamentals | 1. General Principles | 1. Introduction | | Force Vectors | 2. Force Vectors | 2. Statics of Particles | | Force System Resultants | 3. Force System Resultants | 3. Rigid Bodies: Equivalent Systems of Forces | | Equilibrium | 4. Equilibrium of a Rigid Body | 4. Equilibrium of Rigid Bodies | | Structural Analysis | 5. Structural Analysis | 6. Analysis of Structures | | Distributed Forces | 6. Center of Gravity, Centroid, and Moment of Inertia | 5. Distributed Forces: Centroids and Centers of Gravity 7. Distributed Forces: Moments of Inertia | | Mechanics of Materials | | | | Stress & Strain | 7. Stress and Strain | 8. Concept of Stress | | Axial Load | 9. Axial Load | 9. Stress and Strain-Axial Loading | | Torsion | 10. Torsion | 10. Torsion | | Bending | 11. Bending | 11. Pure Bending | | Transverse Shear | 12. Transverse Shear | 13. Shearing Stresses in Beams and Thin-Walled Members | | Combined Loadings | 13. Combined Loadings | - | | Stress Transformation | 14. Stress and Strain Transformation | 14. Transformations of Stress | | Deflection | 16. Deflection of Beams and Shafts | 15. Deflection of Beams | | Columns | 17. Buckling of Columns | 16. Columns |
Understanding axial load, normal stress ( ), and shear stress ( normal stress ( )
General Principles, Force Vectors, and Equilibrium of a Particle.
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