INIS
actuators
100%
muscles
100%
tissues
100%
energy
100%
liquid crystals
78%
elastomers
78%
fibers
50%
design
35%
robots
35%
waveguides
28%
strains
14%
3d printing
14%
performance
14%
proposals
14%
power density
14%
underwater
14%
density (energy)
14%
speed
7%
electrostatics
7%
trade
7%
increasing
7%
comparative evaluations
7%
manufacturing
7%
shells
7%
fabrication
7%
barriers
7%
light sources
7%
research programs
7%
penetration depth
7%
length
7%
relaxation
7%
applications
7%
incidents
7%
control
7%
capacity
7%
energy efficiency
7%
stimuli
7%
motors
7%
isomerization
7%
hydraulics
7%
Engineering
Actuators
100%
Artificial Muscle
100%
Energy Engineering
100%
Liquid Crystals
78%
Actuation
50%
Design
35%
Soft Robot
28%
Fiber
28%
Internals
21%
Muscle Fiber
14%
3D Printing
14%
Newer Material
14%
Power Density
14%
High Strain
14%
Demonstrates
14%
Performance
14%
Robotics
14%
Robot
7%
Fabrication
7%
Core-Shell
7%
Energy Efficiency
7%
Core Waveguide
7%
Wearable Technology
7%
Light Source
7%
Composite Fiber
7%
Electrostatics
7%
Penetration Depth
7%
Reversibility
7%
Actuation Force
7%
Motors
7%
Gas Fuel Manufacture
7%
Requirements
7%
Applications
7%
Innovation
7%
Research Program
7%
Physics
Elastomers
100%
Tissue
100%
Locomotion
100%
Detection
100%
Cores
27%
3D Printing
18%
Performance
18%
Frequencies
18%
Flux Density
18%
Strain
18%
Isomerization
9%
Light Sources
9%
Speed
9%
Fabrication
9%
Soft Matter Physics
9%
Printing
9%
Light
9%
Utilization
9%
Increasing
9%
Work
9%
Research Program
9%
Motors
9%
Gaps
9%
Electrostatics
9%
Hydraulics
9%
Technology
9%