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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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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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. This project includes collaborations with Sofar Ocean https://www.sofarocean.com/ (link is external) . Additional details on the research team can be found at: https://simpsoba.su.domains/ (link is external
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studies, and modeling work to conduct curiosity- and application-driven research on marine biogeochemistry and ecosystems in a changing environment. YOUR TASKS Conduct research on the ocean carbon cycle
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Professional experience Experience in ecological modelling, oceanography, environmental sciences, statistical computing or a related discipline (PhD in any of this fields is desirable but not required) Strong
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Offer Description Understand how large offshore wind farms reshape atmospheric and ocean processes, and help advance sustainable offshore energy through observations, high-resolution modelling and coupled
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of oyster reefs in the North Sea. In 2027 the real size structures will be placed on the seabed by offshore vessels. Before this, you will calculate their stability and conduct physical model tests
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to the application deadline Experience from sea ice field work or polar expeditions Experience in work with oceanographic or meteorological data and models What you will do Apply, validate and improve algorithms
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year) Responsibilities: Coordination of the abiotic part of the Upper Danube Supersite within the framework of DANUBIUS-RI (flagship research infrastructure for comprehensive understanding of River-Sea
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., Menemenlis, D., Sušelj, K., and Le Fouest, V.: RADIv2, an Adaptable and Versatile Diagenetic Model for Coastal and Open-Ocean Sediments, EGUsphere [preprint], https://doi.org/10.5194/egusphere-2025-2244 , 2025