Технические дисциплины и материаловедение
Photoelectrons
100%
Electronic structure
95%
Surface chemistry
84%
Valence bands
76%
Aluminum oxide
61%
X rays
58%
Liquids
42%
Ions
39%
Fermi level
36%
Esters
35%
Core levels
34%
Jitter
32%
Density functional theory
31%
Anodes
30%
Substrates
30%
Energy gap
24%
Atoms
22%
Evaporation
21%
Substitution reactions
21%
Impurities
20%
Stainless steel
18%
Electric potential
16%
Coatings
16%
Химические соединения
Ferromagnetism
80%
X-Ray Photoelectron Spectrum
71%
Valence Band
70%
Coherent Potential Approximation
63%
Surface Chemistry
58%
Quantum Dot
57%
Electronic State
47%
Core Level
38%
Fermi Level
37%
Ambient Reaction Temperature
35%
Doping Material
33%
Band Gap
33%
Evaporation
28%
Magnetic Moment
26%
Substitution Reaction
20%
Density Functional Theory
19%
Diffusion
19%
Coating Agent
19%
Dioxygen
18%
Ion
17%
Surface
16%
Purity
16%
Magnetization
11%
Tetragonal Space Group
11%
Electron Spin
10%
Microwave
10%
Absorption Spectrum
9%
X-Ray Photoelectron Spectroscopy
8%
Red
8%
Microstructure
8%
Metal Ion
8%
Pressure
7%
Crystal Structure
6%
Energy
6%
Ligand
5%
Физика и астрономия
ferromagnetism
62%
photoelectrons
57%
quantum dots
49%
electronic structure
48%
room temperature
35%
x rays
34%
valence
31%
ions
25%
manganese
25%
arc discharges
25%
oxygen
23%
magnetic moments
20%
substitutes
16%
density functional theory
16%
evaporation
16%
electronic spectra
14%
coatings
14%
impurities
14%
metal ions
13%
configurations
13%
red shift
13%
energy of formation
13%
ligands
12%
approximation
11%
atoms
10%
transition metals
10%
photoelectron spectroscopy
10%
interactions
10%
crystal structure
10%
absorption spectra
9%
synthesis
9%
magnetization
8%
microstructure
7%
defects
7%