Технические дисциплины и материаловедение
Graphene
100%
Silicene
45%
Molecular dynamics
45%
Transition metals
35%
Metals
35%
Amorphization
31%
Atoms
30%
Thermodynamic stability
30%
Heating
26%
Hydrogenation
24%
Nanoclusters
22%
Nanocrystalline alloys
21%
Computer simulation
20%
Quenching
20%
Vitrification
19%
Supercooling
19%
Crystals
18%
Metallic glass
18%
Band structure
18%
Relaxation
16%
Melting
15%
Crystalline materials
14%
Crystallization
14%
Nickel
12%
Metallic matrix composites
11%
Temperature
11%
Nanocomposites
11%
Crystal symmetry
11%
Nanocrystallization
10%
Mercury (metal)
10%
Copper
10%
Modulation
10%
Amorphous alloys
9%
Hot Temperature
9%
Phase diagrams
8%
Electrons
8%
Argon
7%
Substrates
7%
Eutectics
6%
Electronic properties
6%
Interface states
6%
Solidification
6%
Physical properties
5%
Mechanics
5%
Covalent bonds
5%
Glass
5%
Chemical vapor deposition
5%
Химические соединения
Graphene
67%
Simulation
31%
Molecular Dynamics
30%
Molecular Cluster
29%
Liquid Film
22%
Supercooling
17%
Vitrification
17%
Diffusion
17%
Metallic Glass
17%
Hydrogenation
14%
Metal
13%
Electronic Band Structure
13%
Metal Atom
13%
Thermic
12%
Melting
12%
Long-Range Order
12%
Many-Body Potential
11%
Thermal Stability
11%
Multicomponent Reaction
11%
Chemical Transformation
11%
Nanocrystallization
10%
Amorphous Material
9%
Nanofilm
9%
Mechanics
7%
Solidification
7%
Nanocomposite
7%
Drop
7%
Strength
6%
Interface State
6%
Eutectics
6%
Shape
6%
Communication
5%
Phase Diagrams
5%
Cooling
5%
Composite Material
5%
Surface
5%
Физика и астрономия
graphene
42%
copper
13%
metals
9%
metal clusters
7%
bombardment
7%
transition metals
7%
hydrogenation
7%
dendrites
6%
melting
6%
xenon
6%
destruction
6%
molecular dynamics
5%
atoms
5%
simulation
5%
computerized simulation
5%
analogs
5%
nickel
5%
physical properties
5%
argon
5%