Engineering & Materials Science
Activation energy
14%
Antiferromagnetism
11%
Atoms
12%
Copper oxides
5%
Deuterium
11%
Diffraction
5%
Electron resonance
8%
Electronic structure
16%
Electrons
10%
Ferromagnetism
10%
Fluorine
16%
Hydrides
35%
Hydrogen
85%
Iodine
5%
Lattice constants
7%
Linewidth
7%
Magnetic fields
6%
Magnetic properties
9%
Magnetic relaxation
9%
Magnetic resonance
6%
Magnetic susceptibility
6%
Magnetism
5%
Magnetization
12%
Manganites
6%
Neutron diffraction
7%
Nuclear magnetic resonance
100%
Nuclear quadrupole resonance
15%
Oxygen
26%
Paramagnetic resonance
15%
Phase diagrams
6%
Protons
23%
Relaxation
13%
Relaxation time
38%
Spin glass
6%
Spin-lattice relaxation
51%
Substitution reactions
7%
Superconducting materials
19%
Superconductivity
12%
Temperature
33%
Titanium
32%
Transport properties
5%
X rays
5%
Zirconium
7%
Chemical Compounds
35Cl NMR Spectrum
8%
Ambient Reaction Temperature
5%
Antiferromagnetic
10%
Antiferromagnetism
11%
Barton Reaction
5%
Conduction Electron
8%
Deuterium(.)
6%
Diffusion
22%
Diffusion Activation Energy
5%
Dioxygen
14%
Electronic State
6%
Ferromagnetism
7%
Fluorine Atom
10%
Hydride
22%
Hydrogen
49%
Knight Shift
20%
Lattice Parameter
5%
Magnetic Field
9%
Magnetic Ordering
6%
Magnetic Phenomena
16%
Magnetic Property
6%
Magnetic Relaxation
5%
Magnetic Resonance
6%
Magnetization
14%
Neutron Diffraction
8%
NMR Spectroscopy
14%
Nuclear Spin
5%
Proton
13%
Quadrupole
8%
Quadrupole Coupling
6%
Reaction Activation Energy
9%
Resonance
21%
Spin-Lattice Relaxation
23%
Spin-Lattice Relaxation Time (T1)
10%
Superconductivity
9%
Superconductor
15%
Tetragonal Space Group
9%
Time
12%
Physics & Astronomy
activation energy
9%
antiferromagnetism
6%
atoms
5%
conduction electrons
10%
electronic structure
6%
ferromagnetism
5%
fluorine
12%
halogens
8%
hydrides
28%
hydrogen
53%
magnetic properties
5%
magnetization
8%
neutron diffraction
5%
nuclear magnetic resonance
66%
nuclear quadrupole resonance
10%
nuclei
5%
oxygen
17%
protons
10%
relaxation time
19%
resonance lines
8%
room temperature
5%
spin-lattice relaxation
26%
substitutes
5%
superconductivity
6%
temperature
13%
temperature dependence
10%
titanium
25%
x ray diffraction
5%
zirconium hydrides
9%