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integrating hyperspectral observations from the EMIT platform and other complementary satellite observation records towards the mapping biocrust community composition and functional diversity across global
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geostationary weather satellites. Estimate primary and community production in a Lagrangian frame using velocity fields from a physical ocean model and satellite fields. Develop a data-constrained Lagrangian
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to build healthier, more educated communities in South Carolina and beyond. Inclusive Excellence Statement At the University of South Carolina, we strive to cultivate an inclusive environment that is open
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Job Description Job Responsibilities: -Design and implement AI/ML models to analyze large-scale agricultural datasets (e.g., field trials, satellite imagery, IoT sensor data). -Develop pipelines
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of satellite remote sensing and chemistry transport model to study air quality, wildfires, aerosol-cloud interaction, land-air interaction, and the interaction of climate change and atmospheric composition
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Description Texas A&M AgriLife Research – Beeville Station, a satellite of Texas A&M AgriLife Research and Extension Center at Corpus Christi, is seeking a highly motivated Postdoctoral Research Associate
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limited observational data. WaterColor seeks to fill these critical knowledge gaps through an integrated approach that combines field observations, satellite remote sensing, and advanced optical techniques
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/inference and communications; low-latency and time-constrained communication; satellite and non-terrestrial networking; experimental works on open-radio access network (O-RAN); and quantum communications
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here is the prediction of the composition of communities of marine entities (zooplankton, marine snow particles, and coral reef fishes) from environmental data taken around the point of the biological
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National Aeronautics and Space Administration (NASA) | Pasadena, California | United States | about 1 hour ago
) astrophysics, exoplanet habitability studies, and small satellite technology and operations. SPARCS is a NASA-funded 6U CubeSat designed to monitor UV variability from low-mass stars (K and M dwarfs) with