Physics
Nuclear Magnetic Resonance
100%
Nuclear Magnetic Resonance Polarization
100%
Klystron
60%
Heterogeneous Catalysis
20%
Nanoparticle
20%
Anisotropy
20%
Energy Storage
20%
Field Strength
20%
Material Science
Dynamic Nuclear Polarization
100%
Nuclear Magnetic Resonance
100%
Nuclear Magnetic Resonance Spectroscopy
42%
Biomaterial
28%
Mechanical Strength
14%
Heterogeneous Catalysis
14%
Anisotropy
14%
Battery (Electrochemical Energy Engineering)
14%
Nanoparticle
14%
Engineering
Nuclear Magnetic Resonance
100%
Klystron
33%
Battery (Electrochemical Energy Engineering)
11%
Molecular Level
11%
Nanoparticles
11%
Field Strength
11%
Study Materials
11%
Constraint Space
11%
Detection Sensitivity
11%
Energy Storage
11%
Infrastructure
11%