Engineering
Liquid Gas
100%
Rotational
100%
Liquid Hydrocarbon
100%
Gas-Phase
66%
Time-of-Flight
66%
Energy Engineering
66%
Energy Distribution
66%
Slow Component
33%
Velocity Component
33%
Bulk Liquid
33%
Liquid Temperature
33%
Phase Reaction
33%
Rotational Energy
33%
Rising Edge
33%
Internal Energy
33%
INIS
dynamics
100%
liquids
100%
gases
100%
hydrocarbons
100%
distribution
50%
atoms
33%
lasers
33%
time-of-flight method
33%
energy distribution
33%
kinetic energy
33%
data
16%
production
16%
surfaces
16%
peaks
16%
velocity
16%
fluorescence
16%
photolysis
16%
trapping
16%
nitrogen dioxide
16%
desorption
16%
squalane
16%
hydroxyl radicals
16%
Chemistry
Kinetic Energy
100%
Laser Induced Fluorescence Spectroscopy
50%
Translational Energy
50%
Rotational Energy
50%
Hydroxyl Radical
50%
Photolysis
50%
Gas Phase Reactions
50%
Surface Chemistry
50%
Nitrogen Dioxide
50%
Desorption
50%
Internal Energy
50%