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Tenenbaum, Roberto A.; Marshall, Elvyn Laura (Übersetzung)

Fundamentals of Applied Dynamics (Kartoniert / Broschiert / Paperback)

Springer New York, Springer Science + Business Media LLC, Dezember 2011


2004 - 732 S. - Sprache: Englisch - 236x161x43 mm Previously published in hardcover

ISBN: 1441918442 EAN: 9781441918444

A translation of the highly acclaimed text by Roberto Tenenbaum (originally published in Portuguese). Tenenbaum's book covers the full range of topics included in a complete basic course designed for undergraduate students in engineering. Requiring no more than a basic course in calculus, the text employs an intuitive approach, from the point of view of Newtonian mechanics, that avoids the complications of Hamiltonian and Lagrangian formalism. The balance between analysis and practical examples also avoids the tendency of other engineering- oriented texts to assume an antipathy towards abstract thinking among engineers. The analytical approach, presented in a simple but rigorous way, gives the required tools for modeling novel practical situations.


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Produktdetails

Some praise for the original edition: "[Fundamentals of Applied Dynamics] contains a large number of examples treated in great detail . . . The author takes great pains to carefully examine all the points touched upon . . . The material is presented in a very systematic way, almost always going from the general to the more particular. The text is extremely clear and consistent, and all the figures are of excellent quality . . . The careful, authoritative and comprehensive way in which the material is presented reflects the long experience of the author in teaching dynamics to generations of students." -Peter Hagedorn, Darmstadt University of Technology

Inhaltsverzeichnis

ContentsPrefaceTo the Reader Chapter 1 Introduction1.1 Brief Historical Background1.2 Mechanical Models1.3 The Laws of Motion1.4 Mass Center1.5 Methodology1.6 NotationExercise Series #1 Chapter 2 Vectors and Moments2.1 Free, Sliding, and Bound Vectors2.2 Moments2.3 Vector Systems2.4 Equivalent Systems2.5 Central Axis2.6 Forces and Torques2.7 FrictionExercise Series #2 Chapter 3 Kinematics3.1 Di.erentiation of Vectors and Reference Frames3.2 Angular Velocity of a Rigid Body3.3 Use of Di.erent Reference Frames3.4 Angular Acceleration3.5 Position, Velocity, and Acceleration3.6 Kinematic Theorems3.7 Motion of Particles3.8 Rigid Body Motion3.9 Rolling3.10 Mechanical SystemsExercise Series #3Exercise Series #4Exercise Series #5 Chapter 4 Dynamics of Particles4.1 Dynamic Properties4.2 Newton's Second Law4.3 Plane Motion4.4 Angular Momentum4.5 Work and Potentials4.6 Work and Energy4.7 Impulse and Impact4.8 Conservation PrinciplesExercise Series #6 Chapter 5 Dynamics of Systems5.1 Dynamic Properties5.2 Force Systems5.3 Equations of Motion5.4 Continuous Systems5.5 Work and Potentials5.6 Work and Energy5.7 Conservation Principles5.8 FluidsExercise Series #7 Chapter 6 Inertia6.1 Mass and Mass Center6.2 Inertia Properties of a Particle6.3 Inertia Properties of Systems and BodiesContents xv6.4 Cartesian Coordinates6.5 Transfer of Axes6.6 Principal Directions of InertiaExercise Series #8Exercise Series #9 Chapter 7 Dynamics of the Rigid Body7.1 Dynamic Properties7.2 Equations of Motion7.3 Work on a Rigid Body7.4 Work and Energy7.5 Plane MotionExercise Series #10Exercise Series #11 Chapter 8 Advanced Topics8.1 Motion with a Fixed Point8.2 Gyroscopic Motion8.3 General Motion8.4 Impulse and Impact Exercise Series #12Appendix A Linear AlgebraA.1 ScalarsA.2 VectorsA.3 TensorsA.4 Eigenvalues and Eigenvectors Exercise Series #13Appendix B LinkagesAppendix C Properties of InertiaC.1 LinesC.2 SectionsC.3 SurfacesC.4 SolidsAppendix D Answers to the ExercisesIndex

Kritikerstimmen

From the reviews: "[Fundamentals of Applied Dynamics] contains a large number of examples treated in great detail... The author takes great pains to carefully examine all the points touched upon ... The material is presented in a very systematic way, almost always going from the general to the more particular. The text is extremely clear and consistent, and all the figures are of excellent quality... The careful, authoritative and comprehensive way in which the material is presented reflects the long experience of the author in teaching dynamics to generations of students." Peter Hagedorn, Darmstadt University of Technology From the reviews: "One of the problems of teaching physics and engineering ... is that there is insufficient time in a typical course to study the ... subject in detail. The strength of this book is that it does just that. ... The subject matter is very carefully introduced ... . copiously illustrated with figures and worked examples and there is an extensive set of exercises. ... the book is extremely readable. ... a welcome addition to any university library." (Professor J. Hugill, Contemporary Physics, Vol. 46(4), 2005) "Provides students with all of the essential knowledge they need to solve problems in classical mechanics. ... Precise notation and consistent methodology are used ... . there is a valuable index. ... fascinatingly useful to undergraduate students in engineering courses. ... One can fully appreciate the remarkable and splendid value evident in this contribution. A stimulating introduction to the book is provided ... . a solid base for a graduate course on analytical mechanics." (Current Engineering Practice, Vol. 47, 2004-2005)


ISBN 1-441918-44-2, ISBN 1-44-191844-2, ISBN 1-44191-844-2, ISBN 1-441-91844-2, ISBN 1-4419-1844-2

ISBN 978-1-441918-44-4, ISBN 978-1-44-191844-4, ISBN 978-1-44191-844-4, ISBN 978-1-441-91844-4, ISBN 978-1-4419-1844-4

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