Keyphrases
Nozzle
100%
Species Transport
100%
Plasma Chemical Vapor Deposition
100%
Low-pressure Plasma
100%
Dissociated Species
100%
Nozzle Optimization
100%
Fluid Dynamics
33%
Numerical Simulation
33%
Nonequilibrium Transport
33%
Recombination
33%
Flow Separation
33%
Plasma Reactor
33%
Dissociation
33%
Flow Parameters
33%
Species Distribution
33%
Small Changes
33%
Negligible Effects
33%
Chemical Kinetics
33%
Design Power
33%
Collision Cross Section
33%
Property-based
33%
Atomic Concentration
33%
Chemical Non-equilibrium
33%
Downstream Pressure
33%
Nozzle Exit
33%
Argon Gas
33%
System Scaling
33%
Nozzle Throat Diameter
33%
Dynamic Kinetics
33%
Gas Mixture
33%
Non-equilibrium Thermodynamics
33%
Supersonic Nozzle
33%
Mixture Properties
33%
Plasma Torch
33%
Upstream Pressure
33%
Power Loss
33%
Nozzle Geometry
33%
Chemically Active Species
33%
Nozzle Design
33%
Engineering
Chemical Vapor Deposition
100%
Vapor Deposition
100%
Pressure Plasma
100%
Nonequilibrium
100%
Flow Separation
50%
Design Power
50%
Power Loss
50%
Plasma Reactor
50%
Nozzle Exit
50%
Downstream Pressure
50%
Fluid Dynamics
50%
Flow Parameters
50%
Negligible Effect
50%
Collision Cross
50%
Mixture Property
50%
Cross Section
50%
Nozzle Design
50%
Computer Simulation
50%
Gas Mixture
50%
Earth and Planetary Sciences
Fluid Dynamics
100%
Nozzle Design
100%
Reaction Kinetics
100%
Nozzle Geometry
100%
Nozzle Walls
100%
Supersonic Nozzle
100%
Plasma Torch
100%
Vapor Deposition
100%
Gas Mixture
100%
Physics
Supersonics
100%
Vapor Deposition
100%
Blood Plasma
100%
Flow Parameters
50%
Gas Mixture
50%
Plasma Torch
50%
Nozzle Geometry
50%
Fluid Dynamics
50%
Reaction Kinetics
50%