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The role of competition effect in the raindrop formation
Y. Segal,
M. Pinsky
, A. Khain
*
*
Corresponding author for this work
Fredy & Nadine Herrmann Institute of Earth Sciences
Research output
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Article
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peer-review
24
Scopus citations
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Keyphrases
Raindrop
100%
Supersaturation
100%
Competition Effect
100%
Cloud-based
66%
Soluble Aerosol
66%
Humidity
33%
Droplet Spectrum
33%
Collision Kernel
33%
Parcel Model
33%
Cloud Droplets
33%
Stochastic Kinetics
33%
Kinetic Equation
33%
Spectrum Evolution
33%
Droplet Collision
33%
Droplet Concentration
33%
Large Droplets
33%
Droplet nucleation
33%
Aerosol Growth
33%
Hygroscopic Seeding
33%
Droplet Growing
33%
Rain Enhancement
33%
Condensational Growth
33%
Chemistry
Supersaturation
100%
formation
100%
Base
66%
Condensation
33%
Nucleation
33%
Cloud Droplet
33%
Humidity
33%
Earth and Planetary Sciences
Supersaturation
100%
Raindrop
100%
Nucleation
33%
Relative Humidity
33%
Cloud Droplet
33%
Seeding
33%
Humidity
33%
Kinetic Equation
33%
Engineering
Supersaturation
100%
Main Effect
33%
Relative Humidity
33%
Cloud Droplet
33%
Kinetic Equation
33%
Physics
Supersaturation
100%
Nucleation
33%
Condensation
33%
Kinetic Equation
33%
Humidity
33%
Chemical Engineering
Cloud Droplet
100%