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Keyphrases
Size Dependence
100%
Mechanical Shock
100%
Modified Couple Stress Theory
100%
Beam Type
100%
Shock Acceleration
100%
Dynamic Pull-in
100%
Microbeam
66%
Single Degree of Freedom
66%
Finite Element Method
33%
Differential Equations of Motion
33%
Classical Theory
33%
Model Prediction
33%
Computationally Efficient
33%
Prediction Method
33%
Euler-Bernoulli Beam
33%
Size Stability
33%
Size Effect
33%
Stability Analysis
33%
Theoretical Formulation
33%
Micromechanics
33%
Geometric Nonlinearity
33%
Couple Stress
33%
Governing Differential Equation
33%
Hamilton's Principle
33%
Stress Components
33%
Fully Clamped
33%
Material Length Scale Parameter
33%
Voltage Amplitude
33%
Beam Oscillation
33%
Galerkin Approximation
33%
Acceleration Pulse
33%
High-shock
33%
Maximum Amplitude
33%
Beam Thickness
33%
Engineering
Degree of Freedom
100%
Microelectromechanical System
100%
Mechanical Shock
100%
Modified Couple Stress
100%
Single Degree
100%
Scale Parameter
50%
Finite Element Analysis
50%
Parametric Study
50%
Classical Theory
50%
Beam Model
50%
Model Prediction
50%
Stability Analysis
50%
Length Scale
50%
Bernoulli Beam
50%
Size Effect
50%
Governing Differential Equation
50%
Hamilton's Principle
50%
Stress Component
50%
Geometric Nonlinearity
50%
Pull-in Voltage
50%