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9780131866812

Principles of Dynamics

by
  • ISBN13:

    9780131866812

  • ISBN10:

    0131866818

  • Edition: 10th
  • Format: Paperback
  • Copyright: 2006-01-01
  • Publisher: Prentice Hall
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List Price: $125.67

Summary

For introductory dynamics courses found in mechanical engineering, civil engineering, aeronautical engineering, and engineering mechanics departments. This 400 page paperback text contains all the topics and examples of the bestselling hardback text, and free access to Hibbelers Onekey course where instructors select and post assignments. All this comes with significant savings for students! Hibbeler's course contains over 3,000 Statics and Dynamics problems instructors can personalize and post for student assignments. OneKey lets instructors edit the values in a problem, guaranteeing a fresh problem for the students, and then use use MathCAD solutions worksheets to generate solutions for use in grading (and post for student review). Each problem also comes with optional student hints and an assignment guide. PHGradeAssist - Hibbeler's PHGradeassist course contains over 600 Statics and Dynamics problems an instructor can use to generate algorithmic homework. PHGA grades and tracks student answers and performance, and offers sample solutions as feedback. Students will also find a complete Activebook (cross referenced in hints) as well as a set of animations and simulations for use on-line. Professors will find complete support including Powerpoints, JPEGS, Active Learning Slides for CRS systems, Matlab/Mathcad support, and student Math Review Of course, the Hibbeler Principles book retains all it's core features that make it the most student friendly book on the market -- the most examples, 3D photrealistic artwork, Procedure for Analysis problem solving boxes, triple accuracy checking, photgraphs that teach, and a carefully-crafted, student centered design.

Table of Contents

Kinematics of a Particle
Introduction
Rectilinear Kinematics: Continuous Motion
Rectilinear Kinematics: Erratic Motion
General Curvilinear Motion
Curvilinear Motion: Rectangular Components
Motion of a Projectile
Curvilinear Motion: Normal and Tangential Components
Curvilinear Motion: Cylindrical Components
Absolute Dependent Motion Analysis of Two Particles
Relative-Motion Analysis of Two Particles Using Translating Axes
Kinetics of a Particle: Force and Acceleration
Newton's Laws of Motion
The Equation of Motion
Equation of Motion for a System of Particles
Equations of Motion: Rectangular Coordinates
Equations of Motion: Normal and Tangential Coordinates
Equations of Motion: Cylindrical Coordinates
Central-Force Motion and Space Mechanics
Kinetics of a Particle: Work and Energy
The Work of a Force
Principle of Work and Energy
Principle of Work and Energy for a System of Particles
Power and Efficiency
Conservative Forces and Potential Energy
Conservation of Energy
Kinetics of a Particle: Impulse and Momentum
Principle of Linear Impulse and Momentum
Principle of Linear Impulse and Momentum for a System of Particles
Conservation of Linear Momentum for a System of Particles
Impact
Angular Momentum
Relation Between Moment of a Force and Angular Momentum
Angular Impulse and Momentum Principles
Steady Fluid Streams
Propulsion with Variable Mass
Kinematics and Kinetics of a Particle
Planar Kinematics of a Rigid Body
Rigid-Body Motion
Translation
Rotation About a Fixed Axis
Absolute General Plane Motion Analysis
Relative-Motion Analysis: Velocity
Instantaneous Center of Zero Velocity
Relative-Motion Analysis: Acceleration
Relative-Motion Analysis Using Rotating Axes
Planar Kinetics of a Rigid Body: Force and Acceleration
Moment of Inertia
Planar Kinetic Equations of Motion
Equations of Motion: Translation
Equations of Motion: Rotation About a Fixed Axis
Equations of Motion: General Plane Motion
Planar Kinetics of a Rigid Body: Work and Energy
Kinetic Energy
The Work of a Force
The Work of a Couple
Principle of Work and Energy
Conservation of Energy
Planar Kinetics of a Rigid Body: Impulse and Momentum
Linear and Angular Momentum
Principle of Impulse and Momentum
Conservation of Momentum
Eccentric Impact
Planar Kinematics and Kinetics of a Rigid Body
Three-Dimensional Kinematics of a Rigid Body
Rotation About a Fixed Point
The Time Derivative of a Vector Measured from a Fixed and Translating-Rotating System
General Motion
Relative-Motion Analysis Using Translating and Rotating Axes
Three-Dimensional Kinetics of a Rigid Body
Moments and Products of Inertia
Angular Momentum
Kinetic Energy
Equations of Motion
Gyroscopic Motion
Torque-Free Motion
Vibrations
Undamped Free Vibration
Energy Methods
Undamped Forced Vibration
Viscous Damped Free Vibration
Viscous Damped Forced Vibration
Electrical Circuit Analogs
Appendixes
Table of Contents provided by Publisher. All Rights Reserved.

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