Mechanical Engineer's Handbook
Author: Dan Marghitu & J. Irwin
Format: Hardcover
Pages: 896
ISBN: 0-12-471370-X
Publisher: Butterworth-Heinemann
Year Published: 2001
Item Number: 100-842
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Mechanical Engineer's Handbook
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Description

The Mechanical Engineer's Handbook was developed and written specifically to fill a need for mechanical engineers and mechanical engineering students throughout the world. With over 1000 pages, 550 illustrations, and 26 tables the Mechanical Engineer's Handbook is very comprehensive, yet affordable, compact, and durable. The Handbook covers all major areas of mechanical engineering with succinct coverage of the definitions, formulas, examples, theory, proofs, and explanations of all principle subject areas. The Handbook is an essential, practical companion for all mechanical engineering students with core coverage of nearly all relevant courses included. Also, anyone preparing for the engineering licensing examinations will find this handbook to be an invaluable aid. Useful analytical techniques provide the student and practicing engineer with powerful tools for mechanical design.

This book is designed to be a portable reference with a depth of coverage not found in "pocketbooks" of formulas and definitions and without the verbosity, high price, and excessive size of the huge encyclopedic handbooks. If an engineer needs a quick reference for a wide array of information, yet does not have a full library of textbooks or does not want to spend the extra time and effort necessary to search and carry a six pound handbook, this book is for them.

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Contents:

  • Statics
    • Vector Algebra
    • Centroids and Surface Properties
    • Moments and Couples
    • Equilibrium
    • Dry Friction
  • Dynamics
    • Fundamentals
    • Kinematics of a Point
    • Dynamics of a Particle
    • Planar Kinematics of a Rigid Body
    • Dynamics of a Rigid Body
  • Mechanics of Materials
    • Stress
    • Deflection and Stiffness
    • Fatigue
  • Theory of Mechanisms
    • Fundamentals
    • Position Analysis
    • Velocity and Acceleration Analysis
    • Kinetostatics
  • Machine Components
    • Screws
    • Gears
    • Springs
    • Rolling Bearings
    • Lubrication and Sliding Bearings
  • Theory of Vibration
    • Introduction
    • Linear Systems with One Degree of Freedom
    • Linear Systems with Finite Numbers of Degrees of Freedom
    • Machine-Tool Vibrations
  • Principles of Heat Transfer
    • Heat Transfer Thermodynamics
    • Conduction Heat Transfer
    • Convection Heat Transfer
  • Fluid Dynamics
    • Fluids Fundamentals
    • Hydraulics
  • Control
    • Introduction
    • Signals
    • Transfer Functions
    • Connection of Elements
    • Poles and Zeros
    • Steady-State Error
    • Time-Domain Performance
    • Frequency-Domain Performances
    • Stability of Linear Feedback Systems
    • Design of Closed-Loop Control Systems by Pole-Zero Methods
    • Design of Closed-Loop Control Systems by Frequential Methods
    • State Variable Models
    • Nonlinear Systems
    • Nonlinear Controllers by Feedback Linearization
    • Sliding Control
  • Appendix: Differential Equations and Systems of Differential Equations

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