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  • P31H: The Synergy Among Theoretical Methods, Laboratory Studies, and Atmospheric Modeling: Chemistry, Photochemistry, and Cloud Processes in Planetary Atmospheres I Poster
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Primary Convener:
Benjamin Frandsen, University of Helsinki

Convener:
Xi Zhang, University of California Santa Cruz
Wencheng Shao, University of Southampton
Wen Chao, JPL/NASA/Caltech

Early Career Convener:
Andrea Salazar, Harvard University

Chair:
Benjamin Frandsen, University of Helsinki
Xi Zhang, University of California Santa Cruz
Wencheng Shao, University of Southampton
Wen Chao, JPL/NASA/Caltech
Andrea Salazar, Harvard University

The study of planetary atmospheres is more vibrant than ever. With the James Webb Space Telescope (JWST) measuring the chemical composition of exoplanetary atmospheres, and with several current and upcoming missions to solar system bodies like Venus, Jupiter and Titan, the importance and timeliness of this field is clear. A crucial aspect of studying planetary atmospheres is modeling their atmospheric chemistry and aerosol/cloud formation processes. This includes both comprehensive atmospheric modeling and investigations into fundamental chemical processes to better constrain these models. We invite abstract submissions that involve modeling the atmospheric chemistry of planetary bodies beyond Earth. This can include, but is not limited to, atmospheric chemical and photochemical modeling, laboratory studies on chemistry and photochemistry processes relevant to planetary atmospheres, and computational simulations of chemistry and photochemistry pertinent to these environments. The session is open to research aimed at advancing our understanding of planetary atmospheric chemistry beyond Earth.

Index Terms
0317 Chemical kinetic and photochemical properties
0343 Planetary atmospheres
3367 Theoretical modeling
5405 Atmospheres

Neighborhoods:
4. Beyond Earth
3. Earth Covering

Cross-Listed:
A - Atmospheric Sciences

Co-Organized Sessions:
Atmospheric Sciences

Co-Sponsored Sessions:
EGU: European Geosciences Union

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