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Elastic Plates: Theory and Application

TLDR
A detailed survey of elasticity theory can be found in this article, with a discussion of the basic equations and associated boundary conditions of the elasticity of transversely loaded and initially stressed plates.
Abstract
Mathematical preliminaries survey of elasticity theory fundamentals of plate theory basic equations and associated boundary conditions static deformation of transversely loaded plates dynamics of plates initially stressed plates - elastic instability numerical methods nonlinear considerations laminated plates.

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On the coupling of 3D and 1D Navier-Stokes equations for flow problems in compliant vessels

TL;DR: In this article, the authors propose an approach to couple the original 3D equations with a convenient 1D model for the analysis of flows in compliant vessels, which allows for a dramatic reduction of the computational complexity and is suitable for ''absorbing» outgoing pressure waves.
Book

Vibration With Control

TL;DR: In this article, the authors present a model of a single degree of freedom (SFL) system, which is a combination of linear and asymmetric feedback control systems with Damping.
Journal ArticleDOI

Fabrication of a silicon micromachined capacitive microphone using a dry-etch process

TL;DR: In this paper, a silicon micromachined capacitive microphone has been fabricated on (100) silicon with PECVD silicon nitride as the diaphragm and backplate material.
Journal ArticleDOI

T-elements: State of the art and future trends

TL;DR: Trefftz-type elements as discussed by the authors are finite elements the internal field of which fulfils the governing differential equations of the problema priori whereas the interelement continuity and the boundary conditions are enforced in an integral weighted residual sense or pointwise.
Journal ArticleDOI

Modeling viscoelastic behavior of arterial walls and their interaction with pulsatile blood flow

TL;DR: The motion converting and drive structure includes operational features which function to continuously vary the linear displacement rate of the support along the arm during constant angular velocity of the upright shaft.
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