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Field
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change monitoring. Our work combines satellite data, physical models, and AI methods to understand ocean dynamics and environmental changes. Duties and Responsibilities Conduct independent and
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(e.g. air/ocean temp data). Use SAR/InSAR, Optical and or laser/radar altimetry to study subglacial hydrology. Creation of altimetry and/or Digital Elevation Models Publish the new findings in
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National Aeronautics and Space Administration (NASA) | Pasadena, California | United States | 24 days ago
, we are developing a 3-km resolution model for the Bering Sea-Chukchi Sea complex using the data-assimilative ECCO-Darwin ocean biogeochemistry state estimate to fully quantify and attribute abrupt
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economics with strong technical skills for a 24-month appointment. The position is embedded within the Environmental Challenges, Sea and Energy department and conducted in close collaboration with the SEA
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is to investigate the seismological manifestation of contrasting modes seafloor spreading regimes across the global mid-ocean ridge system. This will involve a systematic re-analysis of mid-ocean ridge
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Class Acad Prof and Admin Add to My Favorite Jobs Email this Job About the Job This is a postdoctoral position at the University of Minnesota Duluth, Minnesota Sea Grant College Program, supporting a USGS
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water and likely to harbor a liquid ocean beneath their icy crust. The internal dynamics of these systems remain largely unknown, particularly the main sources of oceanic and heat movements, and the
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on solubility, dissolution kinetics, and microbial influences. Your work will refine global carbon cycle models, enhance CO₂ sequestration understanding, and position you at the forefront of ocean
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systems, specifically air-sea interactions in the ocean. The primary objective is to develop a consistent and well-calibrated mixed-layer-wave parameterization to capture turbulent kinetic energy (TKE) and
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Alfred-Wegener-Institut Helmholtz-Zentrum für Polar- und Meeresforschung | Bremerhaven, Bremen | Germany | about 1 month ago
generation and its dependence on the environmental conditions, notably sea ice, and comparing it to semi-analytical estimates Applying this internal tide generation as forcing the internal wave model IDEMIX