INIS
actuators
100%
beams
33%
carbon nanotubes
16%
comparative evaluations
16%
design
100%
devices
16%
finite element method
16%
materials testing
16%
mechanical properties
16%
microscopy
100%
nanostructures
100%
nanowires
16%
one-dimensional calculations
16%
optimization
16%
performance
16%
prediction
16%
sensors
16%
testing
100%
thin films
16%
Physics
Finite Element Methods
50%
Microelectromechanical System
50%
Microscopy
100%
Nanoscale
100%
Nanowires
50%
Newton
50%
Optimization
50%
Performance
50%
Responses
100%
Strength of Materials
50%
Thin Films
50%
Engineering
Actuators
100%
Beam Angle
16%
Capacitive
16%
Demonstrates
16%
Design
100%
Design Criterion
16%
Dimensional Structure
16%
Elements
16%
Experiments
16%
Measurer
16%
Mechanical Properties
16%
Nanoscale
100%
Nanowire
16%
Newton (Force)
16%
One Dimensional
16%
Optimization
16%
Performance
16%
Polysilicon
16%
Prediction
16%
Testing
100%
Thin Films
16%
Material Science
Actuator
100%
Beam
33%
Carbon Nanotubes
16%
Characterization
100%
Devices
16%
Material Testing
16%
Materials Structure
16%
Mechanical Property
16%
Microscopy
100%
Nanowires
16%
Sensor
16%
Thin Films
16%