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Titlebook: Classical Mechanics; Matthew J. Benacquista,Joseph D. Romano Textbook 2018 Springer International Publishing AG 2018 Textbook Classical Me

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发表于 2025-3-21 16:26:53 | 显示全部楼层 |阅读模式
书目名称Classical Mechanics
编辑Matthew J. Benacquista,Joseph D. Romano
视频video
概述Contains an early introduction of D’Alembert’s principle, variational principles and Lagrangian & Hamiltonian mechanics.Provides an ideal blend of general concepts and methods which are then applied t
丛书名称Undergraduate Lecture Notes in Physics
图书封面Titlebook: Classical Mechanics;  Matthew J. Benacquista,Joseph D. Romano Textbook 2018 Springer International Publishing AG 2018 Textbook Classical Me
描述.This textbook provides an introduction to classical mechanics at a level intermediate between the typical undergraduate and advanced graduate level. This text describes the background and tools for use in the fields of modern physics, such as quantum mechanics, astrophysics, particle physics, and relativity. Students who have had basic undergraduate classical mechanics or who have a good understanding of the mathematical methods of physics will benefit from this book..
出版日期Textbook 2018
关键词Textbook Classical Mechanics; Textbook Mechanics Physics; Analytical Mechanics textbook; Hamilton Prici
版次1
doihttps://doi.org/10.1007/978-3-319-68780-3
isbn_softcover978-3-319-68779-7
isbn_ebook978-3-319-68780-3Series ISSN 2192-4791 Series E-ISSN 2192-4805
issn_series 2192-4791
copyrightSpringer International Publishing AG 2018
The information of publication is updating

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Brooks A. Keel,Tammie K. SchalueIn this chapter, we extend our analysis of motion to rigid bodies—i.e., bodies having spatial extent, but which have a fixed shape, unchanged by any forces or torques that might act on them. We develop the kinematical framework needed for describing the complicated translational and rotational motion of a rigid body as it moves through space.
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Lisa Campo-Engelstein,Paul BurcherIn this chapter we introduce the basic concepts of special relativity—i.e., spacetime, 4-vectors, the relativistic form of Newton’s 2nd law, and the relativistic Lagrangian formulation, which could serve as the starting point for a course devoted to relativity or relativistic dynamics.
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Rigid Body Kinematics,In this chapter, we extend our analysis of motion to rigid bodies—i.e., bodies having spatial extent, but which have a fixed shape, unchanged by any forces or torques that might act on them. We develop the kinematical framework needed for describing the complicated translational and rotational motion of a rigid body as it moves through space.
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Small Oscillations,In this chapter, we will apply the Lagrangian formalism to the general case of coupled .-body systems perturbed from equilibrium. We will first look at the simple one-dimensional oscillator as a refresher, and then go on to develop the general formulation of the problem, applying it to solve a few simple example problems.
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