Chemistry
Procedure
100%
Hydrogen
100%
Liquid
100%
Metal
100%
Ammonia
100%
Thermodynamic Potential
100%
Reactor
68%
Chemical Reaction
26%
Reaction Temperature
10%
Oxide
10%
Nitride
10%
Chemical Equilibrium
10%
Nitrogen Fixation
10%
Purity
5%
Analytical Method
5%
Phase Composition
5%
Energy
5%
Chemical Reaction Product
5%
Force
5%
Pressure
5%
Nitrogen
5%
Gibbs Free Energy
5%
Ammonia
5%
Thermodynamics
5%
Dissociation
5%
Chemical Transformation
5%
Equilibrium
5%
R3
5%
Physics
Hydrogen
100%
Ammonia
100%
Thermodynamics
100%
Liquid Metals
100%
Gallium
36%
Increasing
15%
Ratios
15%
Nitrogen
15%
Temperature
10%
Oxide
10%
Steam
10%
Thermal Plasma
10%
Chemical Equilibrium
10%
Independent Variables
5%
Assessments
5%
Pressure
5%
Identifying
5%
Sites
5%
Value
5%
Fractions
5%
Gibbs Free Energy
5%
Dissociation
5%
Moles
5%
Engineering
Production
100%
Liquid Metal
100%
Thermodynamic Potential
100%
Reactor
52%
Plasma Reactor
15%
Molar Ratio
15%
Drives
10%
Steam
10%
Products
5%
Temperature
5%
Driving Force
5%
Small Scale
5%
Process Design
5%
Gibbs Free Energy
5%
Thermodynamics
5%
Operating Parameter
5%
Thermal Energy
5%
Operating Temperature
5%
Mole Fraction
5%
Operating Pressure
5%
Local Site
5%
Chemical Looping
5%
Chemical Engineering
Hydrogen
100%
Ammonia
100%
Thermodynamics
100%
Gallium
26%
Nitrogen
15%
Temperature
10%
Oxide
10%
Gibbs Free Energy
5%
Scalability
5%
Material Science
Liquid Metal
100%
Gallium
100%
Steam
10%
Gallium Nitride
10%
Oxide
10%
Temperature
10%