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Intermediate dynamics for engineers, O`reilly, Oliver M. (university Of California, Berkeley)


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Автор: O`reilly, Oliver M. (university Of California, Berkeley)
Название:  Intermediate dynamics for engineers
ISBN: 9781108494212
Издательство: Cambridge Academ
Классификация:





ISBN-10: 1108494218
Обложка/Формат: Hardcover
Страницы: 540
Вес: 1.21 кг.
Дата издания: 30.01.2020
Серия: Physics
Язык: English
Издание: 2 revised edition
Иллюстрации: Worked examples or exercises; 170 line drawings, black and white
Размер: 181 x 254 x 30
Читательская аудитория: Tertiary education (us: college)
Ключевые слова: Fluid mechanics,Robotics,Mechanics of solids, SCIENCE / Mechanics / Fluids
Подзаголовок: Newton-euler and lagrangian mechanics
Ссылка на Издательство: Link
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Поставляется из: Англии
Описание: A fully updated second edition providing a systematic treatment of engineering dynamics that covers Newton-Euler and Lagrangian approaches. It includes two completely revised chapters, a 350-page solutions manual for instructors, and numerous structured examples and exercises, and is suitable for both senior-level and first-year graduate courses.


System Dynamics for Mechanical Engineers

Автор: Matthew Davies; Tony L. Schmitz
Название: System Dynamics for Mechanical Engineers
ISBN: 1461492920 ISBN-13(EAN): 9781461492924
Издательство: Springer
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Цена: 13974.00 р.
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Описание: System Dynamics for Mechanical Engineers

Intermediate Dynamics

Автор: R.A. Howland
Название: Intermediate Dynamics
ISBN: 1441939202 ISBN-13(EAN): 9781441939203
Издательство: Springer
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Цена: 10480.00 р.
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Описание:

As the name implies, Intermediate Dynamics: A Linear Algebraic Approach views "intermediate dynamics"--Newtonian 3-D rigid body dynamics and analytical mechanics--from the perspective of the mathematical field. This is particularly useful in the former: the inertia matrix can be determined through simple translation (via the Parallel Axis Theorem) and rotation of axes using rotation matrices. The inertia matrix can then be determined for simple bodies from tabulated moments of inertia in the principal axes; even for bodies whose moments of inertia can be found only numerically, this procedure allows the inertia tensor to be expressed in arbitrary axes--something particularly important in the analysis of machines, where different bodies' principal axes are virtually never parallel. To understand these principal axes (in which the real, symmetric inertia tensor assumes a diagonalized "normal form"), virtually all of Linear Algebra comes into play. Thus the mathematical field is first reviewed in a rigorous, but easy-to-visualize manner. 3-D rigid body dynamics then become a mere application of the mathematics. Finally analytical mechanics--both Lagrangian and Hamiltonian formulations--is developed, where linear algebra becomes central in linear independence of the coordinate differentials, as well as in determination of the conjugate momenta.

Features include:

- A general, uniform approach applicable to "machines" as well as single rigid bodies

- Complete proofs of all mathematical material. Similarly, there are over 100 detailed examples giving not only the results, but all intermediate calculations

- An emphasis on integrals of the motion in the Newtonian dynamics

- Development of the Analytical Mechanics based on Virtual Work rather than Variational Calculus, both making the presentation more economical conceptually, and the resulting principles able to treat both conservative and non-conservative systems.

Computational Fluid Dynamics for Engineers and Scientists

Автор: Sreenivas Jayanti
Название: Computational Fluid Dynamics for Engineers and Scientists
ISBN: 9402412158 ISBN-13(EAN): 9789402412154
Издательство: Springer
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Цена: 12577.00 р.
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Описание:

This book offers a practical, application-oriented introduction to computational fluid dynamics (CFD), with a focus on the concepts and principles encountered when using CFD in industry.

Presuming no more knowledge than college-level understanding of the core subjects, the book puts together all the necessary topics to give the reader a comprehensive introduction to CFD. It includes discussion of the derivation of equations, grid generation and solution algorithms for compressible, incompressible and hypersonic flows. The final two chapters of the book are intended for the more advanced user. In the penultimate chapter, the special difficulties that arise while solving practical problems are addressed. Distinction is made between complications arising out of geometrical complexity and those arising out of the complexity of the physics (and chemistry) of the problem. The last chapter contains a brief discussion of what can be considered as the Holy Grail of CFD, namely, finding the optimal design of a fluid flow component. A number of problems are given at the end of each chapter to reinforce the concepts and ideas discussed in that chapter.

CFD has come of age and is widely used in industry as well as in academia as an analytical tool to investigate a wide range of fluid flow problems. This book is written for two groups: for those students who are encountering CFD for the first time in the form of a taught lecture course, and for those practising engineers and scientists who are already using CFD as an analysis tool in their professions but would like to deepen and broaden their understanding of the subject.

Computational Fluid Dynamics for Engineers and Scientists

Автор: Sreenivas Jayanti
Название: Computational Fluid Dynamics for Engineers and Scientists
ISBN: 9402415114 ISBN-13(EAN): 9789402415117
Издательство: Springer
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Цена: 9083.00 р.
Наличие на складе: Есть у поставщика Поставка под заказ.

Описание: This book offers a practical, application-oriented introduction to computational fluid dynamics (CFD), with a focus on the concepts and principles encountered when using CFD in industry. Presuming no more knowledge than college-level understanding of the core subjects, the book puts together all the necessary topics to give the reader a comprehensive introduction to CFD. It includes discussion of the derivation of equations, grid generation and solution algorithms for compressible, incompressible and hypersonic flows. The final two chapters of the book are intended for the more advanced user. In the penultimate chapter, the special difficulties that arise while solving practical problems are addressed. Distinction is made between complications arising out of geometrical complexity and those arising out of the complexity of the physics (and chemistry) of the problem. The last chapter contains a brief discussion of what can be considered as the Holy Grail of CFD, namely, finding the optimal design of a fluid flow component. A number of problems are given at the end of each chapter to reinforce the concepts and ideas discussed in that chapter.CFD has come of age and is widely used in industry as well as in academia as an analytical tool to investigate a wide range of fluid flow problems. This book is written for two groups: for those students who are encountering CFD for the first time in the form of a taught lecture course, and for those practising engineers and scientists who are already using CFD as an analysis tool in their professions but would like to deepen and broaden their understanding of the subject.


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