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Surface Properties
100%
Liquid Metal
100%
Plasma-facing Components
100%
Metal Surface
100%
Plasma-material Interactions
100%
Surface Plasma
100%
Component-based Software Development
100%
Lithium
100%
Spherical Torus
100%
Liquid Lithium
50%
National Spherical Torus Experiment Upgrade (NSTX-U)
37%
Refractory Metals
37%
Slow Flow
25%
Wettability
25%
Metal Substrate
25%
Architecting
25%
Divertor
12%
Compositional Changes
12%
Hybrid Technology
12%
Massachusetts Institute of Technology
12%
Hydrogenic
12%
High Fluence
12%
Plasma Exposure
12%
Collaborative Teams
12%
Interaction Control
12%
Metal Interaction
12%
Porous Tungsten
12%
Surface Science
12%
Metal Plasma
12%
Surface Chemistry
12%
Substrate Material
12%
Nanostructures
12%
Intrinsic Safety
12%
Nanopatterning
12%
Princeton University
12%
Safety Concerns
12%
Plasma Environment
12%
Surface Material
12%
Sn Alloys
12%
Multi-institutional
12%
Interaction Properties
12%
Flowing Liquid
12%
Penn State University
12%
Intrinsic Risk Factors
12%
High-Z Plasmas
12%
Engineering
Plasma-Materials Interaction
100%
Liquid Metal
100%
Plasma Facing Component
100%
Porosity
83%
Engineering
33%
Future Design
16%
Interaction Property
16%
Substrate Material
16%
Safety Concern
16%
Alloy
16%
Intrinsic Property
16%
Material Science
Surface Property
100%
Metal Surface
100%
Lithium
100%
Liquid Metal
100%
Refractory Metal
25%
Wettability
16%
Substrate Material
8%
Tungsten
8%
Surface Science
8%
Alloy
8%