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Spherical Torus
100%
National Spherical Torus Experiment Upgrade (NSTX-U)
24%
Tokamak
22%
Resistive Wall Mode
20%
H-mode
20%
Divertor
17%
Lithium
16%
Edge Localized Modes
15%
Spherical Tokamak
14%
Plasma Current
13%
Magnetic Reconnection
13%
Snowflake Divertor
12%
Collisionality
12%
Coaxial Helicity Injection
12%
Non-inductive
12%
Plasma Rotation
12%
Fast Wave
12%
Neutral Beam
11%
Scrape-off Layer
11%
Plasma-facing Components
11%
Wave Heating
9%
Mode Stability
9%
Current Drive
9%
Tearing Mode
8%
Toroidal Field
8%
Lithium Coating
8%
Neutral Beam Injection
7%
Plasma Response
7%
Antenna
7%
TRANSP
7%
Heavy Ions
7%
High Performance
7%
Stored Energy
7%
Higher Harmonic Waves
7%
Neoclassical Tearing Mode
6%
Electron Temperature
6%
Divertor Configuration
6%
Error Field
6%
Neoclassical Toroidal Viscosity
6%
Eigenmodes
6%
Plasma Density
6%
Reduced Model
6%
Radiated Power
6%
Energy Confinement
6%
Current Profile
6%
High beta
5%
Physics Design
5%
Field-reversed Configuration
5%
Non-axisymmetric Magnetic Field
5%
Kinetic Effects
5%
Heat Flux
5%
Solenoid
5%
Tokamak Plasma
5%
Protection System
5%
Physics
Tokamak Device
78%
Transportation
43%
Neutral Beams
34%
Plasma Current
34%
Physics
33%
Magnetic Field
21%
Magnetohydrodynamic Generator
20%
Plasma Facing Component
18%
Aspect Ratio
18%
Harmonics
17%
Electron Energy
16%
Beam Injection
16%
Plasma Density
11%
Antenna
11%
Plasma Control
11%
Liquid Lithium
10%
Radiated Power
10%
Electric Field
9%
Steady State
9%
Magnetohydrodynamics
9%
Ion Temperature
8%
Energetic Particle
8%
Electromagnetism
8%
Feedback Control
7%
Temperature Gradients
6%
Nuclear Fusion
6%
Diffusion
5%
Protection System
5%
Ballooning Modes
5%
Electron Cyclotron Heating
5%
Temperature Profile
5%
Pressure Gradient
5%
Blood Flow
5%
Magnetohydrodynamic Flow
5%
Active Control
5%
Plasma Physics
5%