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Titlebook: Dynamics of Microelectromechanical Systems; Nicolae Lobontiu Textbook 2007 Springer-Verlag US 2007 Dynamics.Electrical.Lobontiu.MEMS.Micro

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Frequency and Time Response of MEMS,ing schemes are discussed in connection with the time response of MEMS. Nonlinear problems, such as those generated by large deformations, and dedicated modeling/solution methods, such as time-stepping schemes or the approximate iteration method are presented, all in the context of MEMS applications.
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Microcantilevers and Microbridges: Bending and Torsion Resonant Frequencies,s (MEMS) applications, such as nano-scale reading/writing in topology detection/ creation, optical detection, material properties characterization, resonant sensing, mass detection, or micro/nano electronic circuitry components such as switches or filters..This chapter studies the bending and torsio
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Frequency and Time Response of MEMS,on is produced by harmonic (sinusoidal, cosinusoidal) factors, the frequency response needs to be analyzed, which, essentially, consists of characterizing the response amplitude and phase shift over the excitation frequency range. The Laplace transform and the transfer function approach are used to
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Nicolae LobontiuFocuses on the mechanical domain (specifically, the quasi-static sub-domain), which is at the core of most of the MEMS.Provides a more in-depth look at the main problems that involve reliable modeling
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Microsystemshttp://image.papertrans.cn/e/image/284127.jpg
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Dynamics of Microelectromechanical Systems978-0-387-68195-5Series ISSN 1389-2134
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