Engineering
Heat Flux
100%
Plasma Facing Component
55%
Finite Element Analysis
48%
Loss Factor
41%
Plasma-Materials Interaction
38%
Thermal Load
32%
Magnetic Field
31%
Optimal Design
28%
Tokamak Device
24%
Antenna
23%
Radio Frequency
22%
Carrier Concentration
22%
Nuclear Fusion
22%
Harmonic Excitation
20%
Liquid Cooling
20%
Resonant Frequency
19%
Optimal Topology
19%
Facing Material
18%
Plasma Source
18%
Vibration Damping
17%
State Operation
17%
Nuclear Reactor
17%
Computational Fluid Dynamics
16%
Electron Energy
16%
Electric Lines
15%
Operational Phase
14%
Actuator
14%
Final Design
13%
Fusion Reactor
13%
Cyclotron Resonance
13%
Resonance Frequency
12%
State Device
12%
Piezoelectric Actuator
12%
Nanotube
11%
Thermal Hydraulics
11%
Material Loss
11%
Harmonics
11%
Limiters
11%
Elastic Beam
11%
Boundary Condition
11%
Fusion Reactor Divertors
10%
Test Article
9%
Piezoelectric
9%
Electron Cyclotron Heating System
9%
Waveguide
9%
Fusion Energy
9%
Pressure Drop
9%
Thermal Fluid
9%
Cross Section
9%
Cavity
8%
Physics
Stellarator
53%
Steady State
45%
Superconducting Magnet
27%
Plasma Facing Component
21%
Magnetic Field
21%
Tokamak Device
20%
Electron Cyclotron Heating
20%
Transmission Line
19%
Nuclear Fusion
17%
Waveguide
17%
Magnetism
15%
Plasma-Materials Interaction
15%
Liquid Cooling
14%
Helicon
13%
Fluence
12%
Physics
12%
Computational Fluid Dynamics
10%
Plasma Density
8%
Electron Cyclotron Resonance
8%
Plasma Simulation
7%
Cryostat
7%
Electron Cyclotron Heating System
7%
Plasma Current
7%
Carbon Fiber
6%
Finite Element Analysis
6%
Electron Energy
6%
Plasma Physics
5%
Ion Temperature
5%
Flux (Rate)
5%
Chlorofluorocarbon
5%
Physics Studies
5%
Turbulence Model
5%
Electron Density
5%