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small fix
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Jim-Xu committed Nov 21, 2023
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xiaotianxu.com
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I was awarded Spring 2023 Schlesinger Travel Grant for attending American Chemistry Society conference.
I received the Spring 2023 Schlesinger Travel Grant to attend American Chemistry Society conference at Indianapolis, IN.
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I was awarded Fall 2023 Schlesinger Travel Grant for attending the International Aerosol Modeling Algorithms conference.
I received the Fall 2023 Schlesinger Travel Grant to attend the International Aerosol Modeling Algorithms conference at Davis, CA.
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related_publications: xu2022Surfactants
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Surfactants play a pivotal role in cloud formation process by changing cloud condensation nuclei activity. Their presence creates a film at the gas-liquid interface, resulting in reduced surface tension and altered water transport dynamics. Traditional approach of &kappa-Köhler theory often overlooked the implications of surfactants, particularly their capacity to decrease surface tension by assuming the surface tension of water, which is vital for realistic aerosol mixtures. This research innovatively combines an effective surface tension model with the particle-resolved aerosol model, PartMC-MOSAIC, allowing for a more sophisticated representation of surface tension variations during water uptake of aerosol particles, bypassing the oversimplifications inherent in conven- tional modal or sectional models.
Surfactants play a pivotal role in cloud formation process by changing cloud condensation nuclei activity. Their presence creates a film at the gas-liquid interface, resulting in reduced surface tension and altered water transport dynamics. Traditional approach of κ-Köhler theory often overlooked the implications of surfactants, particularly their capacity to decrease surface tension by assuming the surface tension of water, which is vital for realistic aerosol mixtures. This research innovatively combines an effective surface tension model with the particle-resolved aerosol model, PartMC-MOSAIC, allowing for a more sophisticated representation of surface tension variations during water uptake of aerosol particles, bypassing the oversimplifications inherent in conven- tional modal or sectional models.


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