Engineering Mechanics: Statics, 12th Edition. Russell C. Hibbeler. Hibbeler achieves this by calling on his everyday classroom experience and his knowledge of. Engineering Mechanics - Statics, 11th Edition. Hibbeler.
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Hibbeler, Engineering Mechanics: Statics. General Principles 3. Chapter Objectives 3. Mechanics 3. 1. 2 Fundamental Concepts 4. Units of Measurement 7. The International System of Units 9. Numerical Calculations 1.
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- Table of Contents Chapter 12 1 Chapter 13 145 Chapter 14 242 Chapter 15 302 Chapter 16 396 Chapter 17 504 Chapter 18 591 Chapter 19 632 Chapter 20 666 Chapter ….
General Procedure for Analysis 1. Force Vectors 1. 7Chapter Objectives 1. Scalars and Vectors 1. Vector Operations 1. Vector Addition of Forces 2. Addition of a System of Coplanar Forces 3. Cartesian Vectors 4.
Addition of Cartesian Vectors 4. Position Vectors 5. Force Vector Directed Along a Line 5.
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Dot Product 6. 93 Equilibrium of a Particle 8. Chapter Objectives 8. Condition for the Equilibrium of a. Particle 8. 53. 2 The Free- Body Diagram 8. Coplanar Force Systems 8.
Three- Dimensional Force Systems 1. Force System. Resultants 1. Chapter Objectives 1. Moment of a Force–Scalar. Formulation 1. 17. Cross Product 1. 21. Moment of a Force–Vector.
Formulation 1. 24. Principle of Moments 1. Moment of a Force about a.
Specified Axis 1. Moment of a Couple 1. Simplification of a Force and Couple. System 1. 60. 4. 8 Further Simplification of a Force and. Couple System 1. 70.
Reduction of a Simple Distributed. Loading 1. 83. 5 Equilibrium of a Rigid Body 1. Chapter Objectives 1. Conditions for Rigid- Body Equilibrium 1. Free- Body Diagrams 2. Equations of Equilibrium 2.
Two- and Three- Force Members 2. Free- Body Diagrams 2. Equations of Equilibrium 2.
Constraints and Statical Determinacy 2. Structural Analysis 2. Chapter Objectives 2. Simple Trusses 2. The Method of Joints 2. Zero- Force Members 2.
The Method of Sections 2. Space Trusses 2. 90. Frames and Machines 2. Internal Forces 3. Chapter Objectives 3. Internal Forces Developed in Structural.
Members 3. 29. 7. Shear and Moment Equations and. Diagrams 3. 45. 7. Relations between Distributed Load, Shear,and Moment 3. Cables 3. 65. 8 Friction 3. Chapter Objectives 3. Characteristics of Dry Friction 3.
Problems Involving Dry Friction 3. Wedges 4. 12. 8. 4 Frictional Forces on Screws 4. Frictional Forces on Flat Belts 4. Frictional Forces on Collar Bearings, Pivot.
Bearings, and Disks 4. Frictional Forces on Journal Bearings 4. Rolling Resistance 4. Center of Gravity and. Centroid 4. 47. Chapter Objectives 4.
Center of Gravity, Center of Mass, and the. Centroid of a Body 4.
Composite Bodies 4. Theorems of Pappus and Guldinus 4. Resultant of a General Distributed.
Loading 4. 93. 9. Fluid Pressure 4. Moments of Inertia 5. Chapter Objectives 5. Definition of Moments of Inertiafor Areas 5. Parallel- Axis Theorem for an Area 5.
Radius of Gyration of an Area 5. Moments of Inertia for. Composite Areas 5. Product of Inertia for an Area 5. Moments of Inertia for an Area about. Inclined Axes 5. 34. Mohr’s Circle for Moments of Inertia 5.
Mass Moment of Inertia 5. Virtual Work 5. 63.
Chapter Objectives 5. Definition of Work 5. Principle of Virtual Work 5. Principle of Virtual Work for a System of. Connected Rigid Bodies 5. Conservative Forces 5. Potential Energy 5.
Potential- Energy Criterion for. Equilibrium 5. 82.
Stability of Equilibrium Configuration 5. Appendix. A. Mathematical Review and. Expressions 5. 98.
Fundamental Problems. Partial Solutions and.
Answers 6. 03. Answers to Selected. Problems 6. 20. Index 6.