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Introduction to Robotics: Pearson New International Edition PDF eBook (PDF eBook) 3rd edition


Introduction to Robotics: Pearson New International Edition PDF eBook (PDF eBook) 3rd edition

eBook by Craig, John J./Craig, John J.

Introduction to Robotics: Pearson New International Edition PDF eBook (PDF eBook)

£43.99

ISBN:
9781292052526
Publication Date:
03 Oct 2013
Edition:
3rd edition
Publisher:
Pearson
Pages:
384 pages
Format:
eBook
For delivery:
Download available
Introduction to Robotics: Pearson New International Edition PDF eBook (PDF eBook)

Description

For senior-year or first-year graduate level robotics courses generally taught from the mechanical engineering, electrical engineering, or computer science departments. Since its original publication in 1986, Craig's Introduction to Robotics: Mechanics and Control has been the markets leading textbook used for teaching robotics at the university level. With perhaps one-half of the material from traditional mechanical engineering material, one-fourth control theoretical material, and one-fourth computer science, it covers rigid-body transformations, forward and inverse positional kinematics, velocities and Jacobians of linkages, dynamics, linear control, non-linear control, force control methodologies, mechanical design aspects, and programming of robots. The full text downloaded to your computer With eBooks you can: search for key concepts, words and phrases make highlights and notes as you study share your notes with friends eBooks are downloaded to your computer and accessible either offline through the Bookshelf (available as a free download), available online and also via the iPad and Android apps. Upon purchase, you'll gain instant access to this eBook. Time limit TheeBooks products do not have an expiry date. You will continue to access yourdigitalebookproducts whilst you have yourBookshelf installed.

Contents

1. Introduction. 2. Spatial Transformations. 3. Forward Kinematics. 4. Inverse Kinematics. 5. Velocities, Static Forces, and Jacobians. 6. Dynamics. 7. Trajectory Planning. 8. Mechanical Design of Robots. 9. Linear Control. 10. Non-Linear Control. 11. Force Control. 12. Programming Languages and Systems.

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