Dynamics of a Damped Wave Equation Arising from MEMS
Author:
Publisher
Society for Industrial & Applied Mathematics (SIAM)
Subject
Applied Mathematics
Link
http://epubs.siam.org/doi/pdf/10.1137/130914759
Reference16 articles.
1. The Quenching of Solutions of Semilinear Hyperbolic Equations
2. Design considerations for electrostatic microvalves with applications in poly(dimethylsiloxane)-based microfluidics
3. A Parabolic Free Boundary Problem Modeling Electrostatic MEMS
4. A note on the quenching rate
5. Is quenching in infinite time possible?
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1. On a quenching problem of hyperbolic MEMS equation with a nonlocal term;Applicable Analysis;2024-07-31
2. Existence and uniqueness for a coupled parabolic‐hyperbolic model of MEMS;Mathematical Methods in the Applied Sciences;2024-01-30
3. A stochastic parabolic model of MEMS driven by fractional Brownian motion;Journal of Mathematical Biology;2023-04-11
4. On the impact of noise on quenching for a nonlocal diffusion model driven by a mixture of Brownian and fractional Brownian motions;Discrete and Continuous Dynamical Systems - S;2023
5. Quenching for a semi-linear wave equation for micro-electro-mechanical systems;Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences;2022-11
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