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Multi-mode excitation of a clamped–clamped microbeam resonator
Mohammad I. Younis
Physical Sciences and Engineering
Mechanical Engineering
Research output
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Contribution to journal
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Article
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peer-review
16
Scopus citations
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Keyphrases
Microbeam Resonator
100%
Voltage-dependent Loads
100%
Multimode Excitation
100%
Nonlinear Dynamics
50%
Resonator
50%
Natural Frequency
50%
Numerical Simulation
50%
Bifurcation Diagram
50%
Microring Resonator
50%
Two-source
50%
Reduced Order Model
50%
Galerkin Method
50%
Multi-mode
50%
Nonlinear Phenomena
50%
Electrostatic Excitation
50%
DC Voltage
50%
AC Voltage
50%
First-order Natural Frequency
50%
Chaotic Attractor
50%
Poincaré Section
50%
Fast Fourier Transform FFT
50%
Time History Response
50%
Quasi-periodic Motion
50%
Torus Bifurcation
50%
Engineering
Multimode
100%
Load Voltage
100%
Resonator
100%
Natural Frequency
100%
Bifurcation Diagram
50%
Computer Simulation
50%
Reduced Order Model
50%
Nonlinear Phenomenon
50%
Time History
50%
Poincare Section
50%
Fast Fourier Transform
50%
Electrostatics
50%
Material Science
Resonator
100%