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Titlebook: Classical Mechanics; Including an Introdu Reinhard Hentschke Textbook 2017 Springer International Publishing AG 2017 Normal Mode Analysis.S

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Scott C. Chappel,Harold G. SpiesOscillatory or vibrational motion has applications in all of physics as well as in engineering. We begin with the one-dimensional harmonic oscillator, including friction and external excitation, and continue to study wave propagation along linear chains, which eventually leads us to normal mode analysis.
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Alisa Von Hagel,Daniela MansbachThere is no such thing as a rigid body. When mechanics is applied to the stability and dynamics of buildings, machinery, vehicles, or parts thereof, one must be able to deal with deformation. In this chapter we focus on elastic deformations, i.e. deformations which disappear completely when the forces causing them are no longer present.
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Mathematical Tools,The following is a compilation of essential mathematical tools needed in theoretical mechanics. A transparent connection between the tool and its application is favored over mathematical rigor.
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Laws of Mechanics,Starting with gravitation this chapter provides an overview over much of what is to come. This includes Newton’s equation of motion or quantities like momentum, angular momentum, torque, and energy as well as their conservation laws. Overall the chapter is meant to guide the beginner through the basic equations and concepts of mechanics.
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Principle of Least Action,In the following we study the principle of least action more thoroughly. This includes equations of motion in systems of point masses, the relation between conservation laws and attendant symmetries, and motion in accelerated systems. We even show how the least action principle can be applied to problems outside of mechanics.
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Integrating the Equations of Motion,This and the following chapter compile most of the standard problems in classical mechanics. After a brief discussion of one-dimensional motion, we turn to the two-body problem.
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Small Oscillations,Oscillatory or vibrational motion has applications in all of physics as well as in engineering. We begin with the one-dimensional harmonic oscillator, including friction and external excitation, and continue to study wave propagation along linear chains, which eventually leads us to normal mode analysis.
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