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National Aeronautics and Space Administration (NASA) | Greenbelt, Maryland | United States | 19 days ago
. Description: Satellite limb and occultation observations provide a unique opportunity to derive critical information about the vertical distribution of aerosols and trace gases with high vertical resolution
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the CERTAINTY project (Cloud-aERosol inTeractions & their impActs IN The earth sYstem), we are working to better understand the interactions between aerosols and clouds and their impact on the climate. This would
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contribute to research into atmospheric chemistry, aerosol science and air quality monitoring. You will use atmospheric instruments and low-cost air quality sensors to monitor particulate matter and gaseous
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The postdoctoral researcher will develop a novel active remote sensing method for the detection and characterization of stratospheric aerosols by adapting the AEROTYPro/GRASP methodology to observations from
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National Aeronautics and Space Administration (NASA) | Greenbelt, Maryland | United States | 19 days ago
(GMAO), is a comprehensive Earth system model and data assimilation system. The GMAO assimilates aerosol optical depth (AOD) observations from space-borne (e.g. MODIS, VIIRS) and ground-based (AERONET
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, we aim to advance our understanding of indoor air pollutants and their implications for human exposure, with particular interest in indoor aerosols and ultrafine particles (UFPs). Main duties and
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the built environment. Through this position, we aim to advance our understanding of indoor air pollutants and their implications for human exposure, with particular interest in indoor aerosols and
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Laboratory of Oceanography of Villefranche | Villefranche sur Mer, Provence Alpes Cote d Azur | France | 22 days ago
the project will be to elucidate the nature and effects of airborne toxic factors, by combining innovative process studies and state-of-the art toxicological assays. In particular, secondary aerosols produced
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Yang (Research Team Leader at MPIC). The project aims at developing AI-powered molecular modeling tools to uncover how molecules form atmospheric aerosols — tiny particles with huge impacts on climate
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, biomonitoring, and toxicity data. Key responsibilities: Lead UCAM's contribution to Task 5.2, including modelling of respiratory deposition of indoor particulate matter and estimation of exposure to aerosol-bound