Engineering Mechanics Dynamics 14th Edition by Russell Hibbeler – Ebook PDF Instant Download/Delivery: 9780133975505 ,0133975509
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Product details:
ISBN 10: 0133975509
ISBN 13: 9780133975505
Author: Russell Hibbeler
Engineering Mechanics Dynamics 14th Edition Table of contents:
Chapter 1: Introduction to Dynamics
- 1.1 Mechanics: An Overview
- 1.2 The Role of Dynamics in Engineering
- 1.3 Fundamental Concepts: Force, Mass, and Acceleration
- 1.4 Units and Dimensions
- 1.5 Vector Operations and Vector Algebra
Chapter 2: Kinematics of a Particle
- 2.1 Rectangular Coordinates
- 2.2 Velocity and Acceleration
- 2.3 Kinematics of a Particle: Motion in Two Dimensions
- 2.4 Motion in Curvilinear Coordinates
- 2.5 Equations of Motion for a Particle
Chapter 3: Kinetics of a Particle
- 3.1 Newton’s Second Law of Motion
- 3.2 Work and Energy
- 3.3 Impulse and Momentum
- 3.4 Applications of Kinetics in Particle Motion
- 3.5 Energy and Power in Particle Motion
Chapter 4: Kinematics of Rigid Bodies
- 4.1 Translation of a Rigid Body
- 4.2 Rotation of a Rigid Body
- 4.3 General Plane Motion
- 4.4 Relative Velocity in Rigid Body Motion
- 4.5 Instantaneous Center of Zero Velocity
Chapter 5: Kinetics of Rigid Bodies
- 5.1 Kinetics of a Rigid Body: Translation and Rotation
- 5.2 Work and Energy in Rigid Body Motion
- 5.3 Impulse and Momentum for Rigid Bodies
- 5.4 Applications of Kinetics to Rigid Body Motion
- 5.5 Energy and Power in Rigid Body Dynamics
Chapter 6: Planar Kinematics of a Rigid Body
- 6.1 Absolute Motion: Translation and Rotation
- 6.2 Relative Motion: Velocity and Acceleration
- 6.3 Instantaneous Center of Rotation
- 6.4 Equations of Motion for a Rigid Body
- 6.5 Applications in Engineering Problems
Chapter 7: Planar Kinetics of a Rigid Body
- 7.1 Translational Motion and Forces
- 7.2 Rotational Motion and Torque
- 7.3 Equations of Motion for Planar Kinetics
- 7.4 Work-Energy Principle in Rigid Body Kinetics
- 7.5 Impulse and Momentum in Rigid Body Dynamics
Chapter 8: Vibrations of Mechanical Systems
- 8.1 Types of Vibrations: Free and Forced Vibration
- 8.2 Natural Frequency of Vibration
- 8.3 Damped Vibrations
- 8.4 Vibrations in Mechanical Systems
- 8.5 Applications of Vibrations in Engineering Systems
Chapter 9: Linear Momentum and Collisions
- 9.1 Linear Momentum: Definition and Properties
- 9.2 Impulse and Momentum in Collisions
- 9.3 Elastic and Inelastic Collisions
- 9.4 Conservation of Momentum
- 9.5 Applications to Particle Collisions
Chapter 10: Work and Energy
- 10.1 Work and Energy in Particle Motion
- 10.2 Kinetic and Potential Energy
- 10.3 Conservation of Mechanical Energy
- 10.4 Work-Energy Theorem in Dynamics
- 10.5 Applications of Work and Energy Principles
Chapter 11: Central Force Motion
- 11.1 Motion Under a Central Force
- 11.2 Conservation of Angular Momentum
- 11.3 Two-Dimensional Central Force Motion
- 11.4 Applications in Orbital Mechanics
- 11.5 Kepler’s Laws and Planetary Motion
Chapter 12: Impulse and Momentum in Systems of Particles
- 12.1 Systems of Particles and Momentum
- 12.2 Impulse and Change in Momentum
- 12.3 Conservation of Momentum in Systems of Particles
- 12.4 Impulse-Momentum Theorem and Applications
- 12.5 Energy Considerations in Particle Systems
Chapter 13: Rigid Body Dynamics: Plane Motion
- 13.1 General Plane Motion of Rigid Bodies
- 13.2 Velocity and Acceleration Analysis
- 13.3 Moment of Inertia in Plane Motion
- 13.4 Dynamics of Rigid Bodies in Plane Motion
- 13.5 Work-Energy Principles for Rigid Bodies
Chapter 14: Dynamics of Rigid Bodies in Three Dimensions
- 14.1 Three-Dimensional Motion of Rigid Bodies
- 14.2 Rotation and Translation in 3D
- 14.3 Angular Momentum and Torque in Three Dimensions
- 14.4 Work-Energy in Three-Dimensional Motion
- 14.5 Applications in Three-Dimensional Rigid Body Dynamics
Chapter 15: Equilibrium of Rigid Bodies
- 15.1 Conditions of Equilibrium
- 15.2 Free-Body Diagrams and Problem-Solving
- 15.3 Applications to Statics and Dynamics
- 15.4 Center of Mass and Center of Gravity
- 15.5 Static Equilibrium and Stability
Appendices
- Appendix A: Mathematical Tools for Dynamics
- Appendix B: Standard Units and Conversions
- Appendix C: Common Equations and Formulas
- Appendix D: Answers to Selected Problems
Index
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