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(Ebook) Engineering Mechanics Statics Third Edition by Andrew Pytel, Jaan Kiusalaas ISBN 9780495244691 0495244694

  • SKU: EBN-2543144
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Instant download (eBook) Engineering Mechanics: Statics, Third Edition (Volume 1) after payment.
Authors:Andrew Pytel, Jaan Kiusalaas
Pages:601 pages.
Year:2010
Publisher:Cengage Learning
Language:english
File Size:10.75 MB
Format:pdf
ISBNS:9780495244691, 0495244694
Categories: Ebooks

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(Ebook) Engineering Mechanics Statics Third Edition by Andrew Pytel, Jaan Kiusalaas ISBN 9780495244691 0495244694

(Ebook) Engineering Mechanics: Statics, Third Edition  by Andrew Pytel, Jaan Kiusalaas  - Ebook PDF Instant Download/Delivery: 9780495244691, 0495244694
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Product details: 

ISBN 10:  0495244694

ISBN 13: 9780495244691

Author:  Andrew Pytel, Jaan Kiusalaas

Table of contents: 

  1. Introduction to Statics
     • Introduction
     • Newtonian Mechanics
     • Fundamental Properties of Vectors
     • Representation of Vectors Using Rectangular Components
     • Vector Multiplication

  2. Basic Operations with Force Systems
     • Introduction
     • Equivalence of Vectors
     • Force
     • Reduction of Concurrent Force Systems
     • Moment of Force About a Point
     • Moment of Force About an Axis
     • Couples
     • Changing the Line of Action of a Force

  3. Resultants of Force Systems
     • Introduction
     • Reducing a Force System to a Force and a Couple
     • Definition of Resultant
     • Resultants of Coplanar Force Systems
     • Resultants of Noncoplanar Force Systems
     • Introduction to Distributed Normal Loads

  4. Coplanar Equilibrium Analysis
    Part A: Analysis of Single Bodies
     • Introduction
     • Definition of Equilibrium
     • Free-Body Diagrams of a Body
     • Coplanar Equilibrium Equations
     • Writing and Solving Equilibrium Equations
     • Equilibrium Analysis for Single-Body Problems
    Part B: Analysis of Composite Bodies
     • Free-Body Diagrams Involving Internal Reactions
     • Equilibrium Analysis of Composite Bodies
     • Special Cases: Two-Force and Three-Force Bodies
    Part C: Analysis of Plane Trusses
     • Description of a Truss
     • Method of Joints
     • Method of Sections

  5. Non-Coplanar Equilibrium
     • Introduction
     • Definition of Equilibrium
     • Free-Body Diagrams
     • Independent Equilibrium Equations
     • Improper Constraints
     • Writing and Solving Equilibrium Equations
     • Equilibrium Analysis

  6. Beams and Cables
    Part A: Beams
     • Introduction
     • Internal Force Systems
     • Analysis of Internal Forces
     • Area Method for Drawing V- and M- Diagrams
    Part B: Cables
     • Cables Under Distributed Loads
     • Cables Under Concentric Loads

  7. Dry Friction
     • Introduction
     • Coulomb's Theory of Dry Friction
     • Problem Classification and Analysis
     • Impending Tipping
     • Angle of Friction; Wedges and Screws
     • Ropes and Flat Belts
     • Disk Friction

  8. Centroids and Distributed Loads
     • Introduction
     • Centroids of Plane Areas and Curves
     • Centroids of Curved Surfaces, Volumes, and Space Curves
     • Theorems of Pappus-Guldinus
     • Center of Gravity and Center of Mass
     • Distributed Normal Loads

  9. Moments and Products of Inertia of Areas
     • Introduction
     • Moments of Inertia of Areas and Polar Moments of Inertia
     • Products of Inertia of Areas
     • Transformation Equations and Principal Moments of Inertia of Areas
     • Mohr's Circle for Moments and Products of Inertia

  10. Virtual Work and Potential Energy
     • Introduction
     • Planar Kinematics of a Rigid Body
     • Virtual Work
     • Method of Virtual Work
     • Instant Center of Rotation
     • Equilibrium and Stability of Conservative Systems

  11. Appendix A. Numerical Integration
     • Introduction
     • Trapezoidal Rule
     • Simpson's Rule

  12. Appendix B. Finding Roots of Functions
     • Introduction
     • Newton's Method
     • Secant Method

  13. Appendix C. Densities of Common Materials

  14. Answers

  15. Index


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Tags: Andrew Pytel, Jaan Kiusalaas, Engineering Mechanics, Mechanics Statics

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