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Generic Monte Carlo tool for kinetic modeling
D. J. Dooling,
L. J. Broadbelt
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Corresponding author for this work
Chemical and Biological Engineering
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Article
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peer-review
21
Scopus citations
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INIS
tools
100%
monte carlo method
100%
modeling
100%
kinetics
100%
information
66%
implementation
66%
solutions
66%
levels
33%
resolution
33%
surfaces
33%
interactions
33%
efficiency
33%
comparative evaluations
33%
applications
33%
dynamics
33%
length
33%
investigations
33%
algorithms
33%
molecular dynamics method
33%
increasing
33%
diffusion
33%
mechanics
33%
reaction mechanisms
33%
Chemistry
Monte Carlo Method
100%
Aqueous Solution
100%
Procedure
100%
Time
100%
Chemical Kinetics Characteristics
100%
Catalysis
50%
Diffusion
50%
Adatoms
50%
Complex Reaction Mechanisms
50%
Concentration
50%
Analytical Method
50%
Surface
50%
Application
50%
Molecular Dynamics
50%
Mechanics
50%
Length
50%
Physics
Monte Carlo
100%
Monte Carlo Method
100%
Information
100%
Kinetics
100%
Diffusivity
50%
Adatoms
50%
Continuum Mechanics
50%
Utilization
50%
Model
50%
Increasing
50%
Computer Science
Modeling
100%
Algorithms
50%
Resolution Level
50%
Current-State
50%
Application
50%
Models
50%
Chemical Engineering
Catalytic Reaction
100%