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Moment equations for chemical reactions on interstellar dust grains
A. Lipshtat,
O. Biham
*
*
Corresponding author for this work
Racah Institute of Physics
Research output
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Article
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peer-review
33
Scopus citations
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Dive into the research topics of 'Moment equations for chemical reactions on interstellar dust grains'. Together they form a unique fingerprint.
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Keyphrases
Interstellar Dust Grains
100%
Chemical Reaction
100%
Moment Equations
100%
Rate Equations
75%
Reactive Species
75%
Gas Phase
75%
Complex Reaction Network
50%
Small Grains
50%
Surface Reaction
50%
Master Equation
25%
High Efficiency
25%
Chemical Species
25%
Master Equation Approach
25%
Organic Molecules
25%
Molecular Hydrogen
25%
Interstellar Medium
25%
Production Rate
25%
Dust Grains
25%
Number of Atoms
25%
Two-species
25%
Low Flux
25%
Ice Mantle
25%
Chemical Complexity
25%
Molecular Species
25%
Molecular Hydrogen Formation
25%
Grain Surface
25%
Interstellar Clouds
25%
Equation Set
25%
Large Grain
25%
Mean-field Approximation
25%
Chemical Model
25%
Engineering
Moment Equation
100%
Rate Equation
75%
Gas-Phase
75%
Master Equation
50%
Reaction Network
50%
Molecular Hydrogen
50%
Organic Molecule
25%
Surface Grain
25%
Chemical Specie
25%
Physics
Interstellar Dust
100%
Vapor Phase
100%
Surface Reaction
66%
Interstellar Matter
33%
Interstellar Clouds
33%