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Efficient stochastic simulations of complex reaction networks on surfaces
Baruch Barzel
*
,
Ofer Biham
*
Corresponding author for this work
Racah Institute of Physics
Research output
:
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Article
›
peer-review
19
Scopus citations
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Keyphrases
Aerosol Chemistry
50%
Chemical Reaction
50%
Cloud Networks
50%
Complex Reaction Network
100%
Diagrammatic Methods
50%
Dust Grains
50%
Genetic Network
50%
Highly Efficient Catalyst
50%
Increasing Complexity
50%
Interstellar Medium
50%
Master Equation
100%
Mean-field Approximation
50%
Moment Equations
50%
Nanosystems
50%
Rate Equations
100%
Reaction Rate
50%
Reactive Species
50%
Stochastic Fluctuations
50%
Stochastic Methods
100%
Stochastic Simulation
100%
Surface Catalysis
50%
Surface Reaction
100%
Engineering
Aerosol Chemistry
50%
Master Equation
100%
Microscopic Domain
50%
Moment Equation
50%
Nanoscale
50%
Rate Equation
100%
Reactant
50%
Reaction Network
100%
Chemistry
Aerosol Chemistry
50%
Complex Reaction Mechanisms
100%
Master Equation
100%
Rate Equation
100%
Surface Reaction
100%
Material Science
Catalysis
25%
Stochastic Simulation
100%
Surface (Surface Science)
100%
Surface Reaction
50%
Physics
Interstellar Matter
50%
Nanoscale
50%
Surface Reaction
100%
Chemical Engineering
Aerosol Chemistry
100%