Engineering & Materials Science
Plasmas
100%
Ethylene
70%
Ignition
63%
Methane
50%
Air
43%
Transport properties
34%
Gas mixtures
30%
Principal component analysis
21%
Electrons
20%
Carbon
20%
Computational fluid dynamics
20%
Turbulence models
18%
Carbon phenolic composites
17%
Pyrolysis
17%
Argon
15%
Earth (planet)
15%
Excited states
11%
Materials testing
11%
Reentry
10%
Composite materials
10%
Heating
9%
Hydrocarbons
9%
Boundary layers
8%
Atmospheric boundary layer
8%
Temperature
7%
Ionization
6%
Deposition rates
6%
Molecules
6%
Degradation
6%
Hot Temperature
6%
Gases
5%
Physics & Astronomy
ignition
50%
principal components analysis
34%
kinetics
33%
ethylene
33%
gas mixtures
25%
methodology
25%
methane
24%
air
23%
low pressure
22%
transport properties
21%
mars
21%
carbon-phenolic composites
18%
pyrolysis
18%
carbon
18%
propagation
16%
atmospheric entry
14%
atmospheres
12%
thermal protection
12%
reentry
11%
composite materials
11%
plasma jets
10%
simulation
8%
boundary layers
7%
hydrocarbons
7%
pulses
7%
flame stability
7%
nonequilibrium plasmas
7%
excitation
7%
ionization
6%
degradation
6%
hydrocarbon fuels
6%
dipoles
6%
electron energy
6%
performance
6%
collisions
5%
oxidation
5%
supersonic combustion
5%
supersonic combustion ramjet engines
5%
Chemical Compounds
Plasmas
50%
ethylene
46%
Ignition
39%
Methane
37%
Transport properties
34%
Gas mixtures
30%
Carbon
27%
Air
18%
Carbon phenolic composites
17%
Pyrolysis
17%
Earth (planet)
15%
Materials testing
11%
Electrons
11%
Reentry
10%
Composite materials
10%
Boundary layers
8%
Gases
7%
Ionization
6%
Degradation
6%
Hot Temperature
6%