Технические дисциплины и материаловедение
Lithium
100%
Electric properties
84%
Chemical stability
60%
Doping (additives)
53%
Ions
51%
Ionic conductivity
51%
Lithium Chloride
49%
Gadolinium
48%
Lattice constants
46%
Oxygen
41%
Solid solutions
38%
X ray diffraction analysis
28%
Oxides
24%
Temperature
21%
Sensors
17%
Chemical attack
16%
Diffractometers
15%
Crystal structure
14%
Radioactive wastes
13%
Surface structure
13%
Spent fuels
13%
Sintering
13%
Partial pressure
13%
Waste disposal
13%
Argon
12%
Electric Conductivity
12%
Surface morphology
12%
Heat treatment
12%
Thermodynamic stability
11%
Magnets
11%
Stoichiometry
11%
Annealing
11%
Substitution reactions
11%
Molten materials
11%
Electrolytes
10%
Salts
10%
X rays
10%
Catalysts
9%
Surface roughness
9%
Scanning electron microscopy
8%
Oxygen vacancies
8%
Electrodes
8%
Citric acid
8%
Monitoring
7%
Microanalysis
7%
Microstructure
7%
Chemical analysis
7%
Glycerol
6%
Spectroscopy
6%
Химические соединения
Electrical Property
94%
Conductivity
57%
Solid Solution
56%
Ceramic
44%
Lattice Parameter
40%
Chemical Stability
39%
Ionic Conductivity
31%
Doping Material
19%
Dioxygen
19%
Reaction Stoichiometry
16%
Nuclear Reaction
15%
Lithium Chloride
13%
Heat Treatment
12%
Sintering
12%
Free Volume
12%
Oxide
12%
Interstitial
11%
Spent Fuel Radioactive Waste
11%
Surface
10%
Partial Pressure
10%
Homogeneity
10%
Annealing
8%
Electrical Conductivity
8%
Halide
8%
Compound Mobility
8%
X-Ray Diffraction
8%
Reaction Activation Energy
7%
Additive
7%
Thermal Stability
7%
Substitution Reaction
7%
Application
7%
Conductor
6%
Unit Cell Parameter
6%
Citric Acid
6%
Glycerol
5%
Microstructure
5%
Behavior as Electrode
5%
Crystal Structure
5%
Microwave
5%
Impedance Spectroscopy
5%
X-Ray
5%
Scanning Electron Microscopy
5%
Физика и астрономия
solid solutions
55%
conductivity
37%
ion currents
34%
electrical properties
33%
lattice parameters
29%
ceramics
22%
oxygen
20%
lithium
19%
lithium chlorides
17%
lithium oxides
16%
sensors
13%
chemical analysis
13%
oxygen ions
12%
halides
12%
nuclear reactions
11%
sublattices
11%
partial pressure
10%
low concentrations
10%
stoichiometry
10%
homogeneity
10%
ions
10%
catalysts
10%
salts
10%
thermal stability
9%
interstitials
9%
electrolytes
9%
magnets
9%
substitutes
8%
crystal structure
8%
activation energy
8%
electrical resistivity
7%
oxides
7%
electrodes
6%
augmentation
6%
annealing
6%