Description: FREE SHIPPING UK WIDE Theory of Applied Robotics by Reza N. Jazar Theory of Applied Robotics: Kinematics, Dynamics, and Control presents detailed robotics concepts at a theoretical-practical level, concentrating on their practical use. FORMAT Hardcover LANGUAGE English CONDITION Brand New Publisher Description Theory of Applied Robotics: Kinematics, Dynamics, and Control presents detailed robotics concepts at a theoretical-practical level, concentrating on their practical use. Related theorems and formal proofs are provided, as are real-life applications. This new edition is completely revised, and includes updated and expanded example sets and problems and new materials. This textbook is designed for undergraduate or first-year graduate programs in mechanical, systems, and industrial engineering. Practicing engineers, researchers, and related professionals will appreciate the books user-friendly presentation of a wealth of robotics topics, most notably in 3D kinematics and dynamics of manipulator robots. Back Cover Theory of Applied Robotics: Kinematics, Dynamics, and Control presents detailed robotics concepts at a theoretical-practical level, concentrating on their practical use. Related theorems and formal proofs are provided, as are real-life applications. This new edition is completely revised, and includes updated and expanded example sets and problems and new materials. This textbook is designed for undergraduate or first-year graduate programs in mechanical, systems, and industrial engineering. Practicing engineers, researchers, and related professionals will appreciate the books user-friendly presentation of a wealth of robotics topics, most notably in 3D kinematics and dynamics of manipulator robots. Provides practical examples to clarify all aspects of theories; Presents materials in a "fact-reason-application" method; Optimization of minimum time robot motion is a unique feature of this book. Author Biography Reza N. Jazar is a Professor of Mechanical Engineering. Reza received his PhD degree from Sharif University of Technology; MSc and BSc from Tehran Polytechnic. His areas of expertise include Nonlinear Dynamic Systems and Applied Mathematics. He obtained original results in non-smooth dynamic systems, applied nonlinear vibrating problems, time optimal control, and mathematical modeling of vehicle dynamics and stability. He authored several monographs in vehicle dynamics, robotics, dynamics, vibrations, mathematics, and published numerous professional articles, as well as book chapters in research volumes. Most of his textbooks have been adopted by many universities for teaching and research, and by many research agencies as standard model for research results.Dr. Jazar had the pleasure to work in several Canadian, American, Asian, Middle Eastern, and Australian universities, as well as several years in Automotive Industries all around the world. Working in different engineering firms and educational systems provide him a vast experience and knowledge to publish his researches on important topics in engineering and science. His unique style of writing helps readers to learn the topics deeply in an easy way. Table of Contents Introduction.- Kinematics.- Rotation Kinematics.- Orientation Kinematics.- Motion Kinematics.- Forward Kinematics.- Inverse Kinematics.- Angular Velocity.- Velocity Kinematics.- Numerical Methods in Kinematics.- Dynamics.- Acceleration Kinematics.- Motion Dynamics.- Robot Dynamics.- Control.- Path Planning.- F Time Optimal Control.- Control Techniques.- Appendix A: Global Frame Triple Rotation.- Appendix B: Local Frame Triple Rotation.- Appendix C: Principal Central Screws Triple Combination. Appendix D: Trigonometric Formula. Long Description The second edition of this book would not have been possible without the comments and suggestions from my students, especially those at Columbia University. Many of the new topics introduced here are a direct result of student feedback that helped me refine and clarify the material. My intention when writing this book was to develop material that I would have liked to had available as a student. Hopefully, I have succeeded in developing a reference that covers all aspects of robotics with sufficient detail and explanation. The first edition of this book was published in 2007 and soon after its publication it became a very popular reference in the field of robotics. I wish to thank the many students and instructors who have used the book or referenced it. Your questions, comments and suggestions have helped me create the second edition. Preface This book is designed to serve as a text for engineering students. It introduces the fundamental knowledge used in robotics. This knowledge can be utilized to develop computer programs for analyzing the kinematics, dynamics, and control of robotic systems. Feature Provides practical examples to clarify all aspects of theories Presents materials in a "fact-reason-application" method Optimization of minimum time robot motion is a unique feature of this book Details ISBN3030932192 Author Reza N. Jazar Short Title Theory of Applied Robotics Language English Year 2022 Edition 3rd ISBN-10 3030932192 ISBN-13 9783030932190 Format Hardcover Subtitle Kinematics, Dynamics, and Control DOI 10.1007/978-3-030-93220-6 DEWEY 629.892 Publisher Springer Nature Switzerland AG Imprint Springer Nature Switzerland AG Place of Publication Cham Country of Publication Switzerland Pages 826 Publication Date 2022-05-14 UK Release Date 2022-05-14 Edition Description 3rd ed. 2022 Replaces 9781441917492 Alternative 9783030932220 Audience Professional & Vocational Illustrations 361 Illustrations, color; 1 Illustrations, black and white; XXVII, 826 p. 362 illus., 361 illus. in color. We've got this At The Nile, if you're looking for it, we've got it. With fast shipping, low prices, friendly service and well over a million items - you're bound to find what you want, at a price you'll love! 30 DAY RETURN POLICY No questions asked, 30 day returns! 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Format: Hardcover
Language: English
ISBN-13: 9783030932190
Author: Reza N. Jazar
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Book Title: Theory of Applied Robotics
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