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Dynamics: Analysis and Design of Systems in Motion

by Tongue, Benson H.; Sheppard, Sheri D. | HC | Good
Condition:
Good
β€œFormer library book; Pages can have notes/highlighting. Spine may show signs of wear. ~ ”... Read moreabout condition
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Last updated on May 14, 2024 19:11:37 EDTView all revisionsView all revisions

Item specifics

Condition
Good
A book that has been read but is in good condition. Very minimal damage to the cover including scuff marks, but no holes or tears. The dust jacket for hard covers may not be included. Binding has minimal wear. The majority of pages are undamaged with minimal creasing or tearing, minimal pencil underlining of text, no highlighting of text, no writing in margins. No missing pages. See the seller’s listing for full details and description of any imperfections. See all condition definitionsopens in a new window or tab
Seller Notes
β€œFormer library book; Pages can have notes/highlighting. Spine may show signs of wear. ~ ...
Binding
Hardcover
Weight
2 lbs
Product Group
Book
IsTextBook
Yes
ISBN
9780471401988
Subject Area
Science
Publication Name
Dynamics : Analysis and Design of Systems in Motion
Item Length
10.2 in
Publisher
Wiley & Sons, Incorporated, John
Subject
Mechanics / Dynamics
Publication Year
2004
Type
Textbook
Format
Hardcover
Language
English
Item Height
1 in
Author
Benson H. Tongue, Sheri D. Sheppard
Item Width
8.2 in
Item Weight
44.2 Oz
Number of Pages
560 Pages

About this product

Product Information

Dynamics: Analysis and Design of Systems in Motion, by Benson H. Tongue of University of California-Berkeley, and Sheri D. Sheppard of Stanford University, offers a student-focused approach to Dynamics. With a strong emphasis on drawing free body diagrams and the associated inertial response diagrams, an integrated use of computation, use of a structured problem-solving methodology, inclusion of real-world case studies, and robust pedagogy coupled with a truly engaging writing style, reviewers alike have praised this new Dynamics text. Additionally, this first edition has benefited from a comprehensive and thorough accuracy check by eight experienced Dynamics professors, and has been reviewed by more than 200 Statics and Dynamics professors. The authors demonstrate to students how to map their understanding to more realistic situations, enabling them to more effectively break down complex problems into manageable parts.

Product Identifiers

Publisher
Wiley & Sons, Incorporated, John
ISBN-10
0471401986
ISBN-13
9780471401988
eBay Product ID (ePID)
30760610

Product Key Features

Author
Benson H. Tongue, Sheri D. Sheppard
Publication Name
Dynamics : Analysis and Design of Systems in Motion
Format
Hardcover
Language
English
Subject
Mechanics / Dynamics
Publication Year
2004
Type
Textbook
Subject Area
Science
Number of Pages
560 Pages

Dimensions

Item Length
10.2 in
Item Height
1 in
Item Width
8.2 in
Item Weight
44.2 Oz

Additional Product Features

LCCN
2004-057101
Intended Audience
College Audience
Number of Volumes
2 Vols.
Lc Classification Number
Tj173.T66 2004
Table of Content
CHAPTER 1. BACKGROUND AND ROADMAP. 1.1 Newton's Laws. 1.2 How You'll Be Approaching Dynamics. 1.3 Units and Symbols. 1.4 Gravitation. 1.5 The Pieces of the Puzzle. CHAPTER 2. KINEMATICS OF PARTICLES. 2.1 Straight-Line Motion. EXAMPLE 2.1 Speed Determination via Integration. EXAMPLE 2.2 Deceleration Limit Determination. EXAMPLE 2.3 Constant Acceleration/Speed/Distance Relation. EXAMPLE 2.4 Position-Dependent Acceleration. EXAMPLE 2.5 Velocity-Dependent Acceleration (A). EXAMPLE 2.6 Velocity-Dependent Acceleration (B). 2.2 Cartesian Coordinates. EXAMPLE 2.7 Coordinate Transformation (A). EXAMPLE 2.8 Coordinate Transformation (B). EXAMPLE 2.9 RectilinearTrajectory Determination (A). EXAMPLE 2.10 RectilinearTrajectory Determination (B). EXERCISES 2.2. 2.3 Polar and Cylindrical Coordinates. EXAMPLE 2.11 Velocity-Polar Coordinates. EXAMPLE 2.12 Acceleration-Polar Coordinates (A). EXAMPLE 2.13 Acceleration-Polar Coordinates (B). EXAMPLE 2.14 Velocity and Acceleration-Cylindrical Coordinates. EXERCISES 2.3. 2.4 Path Coordinates. EXAMPLE 2.15 Acceleration-Path Coordinates. EXAMPLE 2.16 Analytical Determination of Radius of Curvature. EXAMPLE 2.17 Speed Along a Curve. EXERCISES 2.4. 2.5 Relative Motion and Constraints. EXAMPLE 2.18 One Body Moving on Another. EXAMPLE 2.19 Two Bodies Moving Independently (A). EXAMPLE 2.20 Two Bodies Moving Independently (B). EXAMPLE 2.21 Simple Pulley. EXAMPLE 2.22 Double Pulley. EXERCISES 2.5. 2.6 Just the Facts. SYSTEM ANALYSIS (SA) EXERCISES. SA2.1 Kinematics of Variable Geometry Pulleys. SA2.2 Multi-Axis Seat Ejection (MASE) Sled. SA2.3 Carousel Ride. SA2.4 Amusement Park-Style Golf Game. CHAPTER 3. KINETICS OF PARTICLES. 3.1 Cartesian Coordinates. EXAMPLE 3.1 Analysis of a Spaceship. EXAMPLE 3.2 Forces Acting on an Airplane. EXAMPLE 3.3 Response of an Underwater Probe. EXAMPLE 3.4 Sliding Ming Bowl. EXAMPLE 3.5 Particle in an Enclosure. EXERCISES 3.1. 3.2 Polar Coordinates. EXAMPLE 3.6 Forces Acting on a Payload. EXAMPLE 3.7 Ming Bowl on a Moving Slope. EXAMPLE 3.8 Ming Bowl on a Moving Slope with Friction. EXAMPLE 3.9 No-Slip in a Rotating Arm. EXERCISES 3.2. 3.3 Path Coordinates. EXAMPLE 3.10 Forces Acting on My Car. EXAMPLE 3.11 Finding a Rocket's Radius of Curvature. EXAMPLE 3.12 Determining Slip Point in aTurn. EXAMPLE 3.13 Force and Acceleration for a Sliding Pebble. EXERCISES 3.3. 3.4 Linear Momentum and Linear Impulse. EXAMPLE 3.14 Changing the Space Shuttle's Orbit. EXAMPLE 3.15 Two-Car Collision. 3.5 Angular Momentum and Angular Impulse. EXAMPLE 3.16 Change in Speed of a Model Plane. EXAMPLE 3.17 Angular Momentum of a Bumper. EXAMPLE 3.18 Angular Momentum of aTetherball. EXERCISES 3.5. 3.6 Orbital Mechanics. EXAMPLE 3.19 Analysis of an Elliptical Orbit. EXAMPLE 3.20 Determining Closest Approach Distance. EXERCISES 3.6. 3.7 Impact. EXAMPLE 3.21 Dynamics ofTwo Pool Balls. EXAMPLE 3.22 More Pool Ball Dynamics. 3.8 Obliq
Copyright Date
2005
Dewey Decimal
620.1/04
Dewey Edition
22
Illustrated
Yes

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