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Impact of Planetary Parameters on Water Clouds Microphysics
Huanzhou Yang
, Thaddeus D. Komacek
, Owen B. Toon
, Eric T. Wolf
, Tyler D. Robinson
, Caroline Chael
, Dorian S. Abbot
Astronomy and Planetary Sciences
Research output
:
Contribution to journal
›
Article
›
peer-review
3
Scopus citations
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Keyphrases
Water Clouds
100%
Cloud Microphysics
100%
Global Climate Models
66%
Surface Pressure
66%
Cloud Radiative Effects
66%
Vertical Transfer
66%
Number Density
33%
Water Vapor
33%
Phase Space
33%
Condensation
33%
Observatory
33%
Aerosol
33%
Habitability
33%
Coagulation
33%
Surface Gravity
33%
Constant Size
33%
Mission Concept
33%
Thermal Structure
33%
Weak Effect
33%
James Webb Space Telescope
33%
Exoplanets
33%
Cloud Formation
33%
Pressure Surface
33%
Habitable Exoplanets
33%
Cloud Condensation nuclei
33%
Terrestrial Exoplanets
33%
Habitable Worlds
33%
Aerosol Properties
33%
Model Cloud
33%
Aerosol Model
33%
Cloud Particles
33%
Idealized Experiment
33%
Microphysical Model
33%
Condensable
33%
Cloud Scheme
33%
Microphysical Processes
33%
Radiation Model
33%
Earth and Planetary Sciences
Extrasolar Planet
100%
Cloud Microphysics
100%
Planetary Atmosphere
66%
Climate Modeling
66%
Global Climate
66%
Nucleation
33%
Habitability
33%
Thermal Structure
33%
Surface Gravity
33%
Stellar Radiation
33%
James Webb Space Telescope
33%
Cloud Condensation Nucleus
33%
Aerosol Property
33%
Physics
Extrasolar Planet
100%
Cloud Microphysics
100%
Planetary Atmosphere
66%
Stellar Radiation
33%
Condensation
33%
Surface Gravity
33%
James Webb Space Telescope
33%
Nucleation
33%
Condensation Nuclei
33%