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000 cam4a
001 2210080738767
005 20120425140538
007 ta
008 120425s2011 njua b 001 0 eng
010 a 2010039778
020 a9780470398357 (hardback)
020 a9780470892114 (ebk)
020 a9780470892121 (ebk)
020 a9780470892138 (ebk)
020 a9780470950029 (ebk)
020 a9780470951590 (ebk)
020 a9780470951767 (ebk)
035 a(KERIS)REF000016409757
040 aDLCcDLCdDLCd221008
042 apcc
050 aTA352b.J39 2011
082 a620.1/04222
100 aJazar, Reza N.
245 00 aAdvanced dynamics :brigid body, multibody, and aerospace applications /cReza N. Jazar.
260 aHoboken, N.J. :bWiley,cc2011.
300 axviii, 1324 p. :bill. ;c25 cm.
504 aIncludes bibliographical references (p. 1280-1286) and index.
520 a"According to the author and reviewers, more than 50% of the material taught in courses such as Advanced Dynamics, Mutibody Dynamics, and Spacecraft Dynamics is common to one another. Where graduate students in Mechanical and Aerospace Engineering may have the potential to work on projects that are related to any of the engineering disciplines, they have not been exposed to enough applications in both areas for them to use this information in the real world. This book bridges the gap between rigid body, multibody, and spacecraft dynamics for graduate students and specialists in mechanical and aerospace engineering. The engineers and graduate students who read this book will be able to apply their knowledge to a wide range of applications across different engineering disciplines. The book begins with a review on coordinate systems and particle dynamics which will teach coordinate frames. The transformation and rotation theory along with the differentiation theory in different coordinate frames will provides the required background to learn the rigid body dynamics based on Newton-Euler principles. Applications to this coverage can be found in vehicle dynamics, spacecraft dynamics, aircraft dynamics, robot dynamics, and multibody dynamics, each in a chapter. The Newton equations of motion will be transformed to Lagrange equation as a bridge to analytical dynamics. The methods of Lagrange and Hamilton will be applied on rigid body dynamics. Finally through the coverage of special applications this text provides understanding of advanced systems without restricting itself to a particular discipline. The author will provide a detailed solutions manual and powerpoint slides as ancillaries to this book"--cProvided by publisher.
650 aDynamics.
950 0 bUSD150.00
Advanced dynamics :rigid body, multibody, and aerospace applications
종류
단행본 서양서
서명
Advanced dynamics :rigid body, multibody, and aerospace applications
저자명
발행사항
Hoboken, N.J. : Wiley c2011.
형태사항
xviii, 1324 p : ill. ; 25 cm.
주기사항
Includes bibliographical references (p. 1280-1286) and index. / "According to the author and reviewers, more than 50% of the material taught in courses such as Advanced Dynamics, Mutibody Dynamics, and Spacecraft Dynamics is common to one another. Where graduate students in Mechanical and Aerospace Engineering may have the potential to work on projects that are related to any of the engineering disciplines, they have not been exposed to enough applications in both areas for them to use this information in the real world. This book bridges the gap between rigid body, multibody, and spacecraft dynamics for graduate students and specialists in mechanical and aerospace engineering. The engineers and graduate students who read this book will be able to apply their knowledge to a wide range of applications across different engineering disciplines. The book begins with a review on coordinate systems and particle dynamics which will teach coordinate frames. The transformation and rotation theory along with the differentiation theory in different coordinate frames will provides the required background to learn the rigid body dynamics based on Newton-Euler principles. Applications to this coverage can be found in vehicle dynamics, spacecraft dynamics, aircraft dynamics, robot dynamics, and multibody dynamics, each in a chapter. The Newton equations of motion will be transformed to Lagrange equation as a bridge to analytical dynamics. The methods of Lagrange and Hamilton will be applied on rigid body dynamics. Finally through the coverage of special applications this text provides understanding of advanced systems without restricting itself to a particular discipline. The author will provide a detailed solutions manual and powerpoint slides as ancillaries to this book"

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