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regional ocean/ice/biogeochemistry models (OBMs) applied to Arctic coastal seas, the properties of terrigenous sediments are rarely integrated into physical and biogeochemical processes. To address this gap
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expertise lies in machine learning, artificial intelligence, data mining, signal processing, or statistical modeling, with an interest in applying these skills to ocean science. You have strong organizing
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to enable convergence between the IPSL Earth System model and observations (natural and instrumental archives). · Evaluate the mechanisms of internal ocean-atmosphere coupled dynamics and feedbacks in
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exchanges in the next generation of Earth System Models, for the OptimESM project. - Implementation, testing and evaluation of new parameterizations of air-sea carbon exchanges - Development of diagnostics
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Dalhousie University | Halifax Mid Harbour Nova Scotia Provincial Government, Nova Scotia | Canada | about 5 hours ago
the atmosphere as well as its deposition into the ocean using a combination of satellite imagery and the chemical transport model GEOS-Chem. Job Summary Reporting to the Principal Investigator, the Research
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Applications are invited for a post-doctoral research associate (PDRA) position within the Mechanical and Geological Model Analogues (MAGMA) Laboratory in the Department of Earth, Ocean and
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possess substantial expertise in oceanic nitrogen cycles, ocean circulation, and carbon cycling in the context of climate change. A comprehensive understanding of climate science, including extreme weather
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National Aeronautics and Space Administration (NASA) | New York City, New York | United States | about 3 hours ago
system. Climate models are important tools for improving our understanding and prediction of atmosphere, ocean, and climate behavior. We seek candidates with an interest in advancement of radiative
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-atmosphere dynamics. We will build an AI-enabled modeling system that couples a GPU-optimized ocean model with a biogeochemical module and AI-based, kilometer-scale atmospheric forecasts. This system will
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to lead an investigation exploring the ability of recently developed global earth system models to simulate coastal sea level across sub-annual timescales. This work will leverage a suite of coupled models