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National Aeronautics and Space Administration (NASA) | New York City, New York | United States | about 2 months 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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-Ocean model coupled with E3SM’s land and river components Including wave setup processes into E3SM by coupling the E3SM wave and ocean components Application of this coupled model to better understand
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Experience · PhD in oceanography, atmospheric science, geophysics, economics, computer science, statistics, or a related discipline at time of appointment; · Familiarity with literature relevant to sea-level
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Position Details Position Information Recruitment/Posting Title Postdoctoral Associates - Sea Level Rise Projections and Climate Risk Assessment & Management Department Earth & Planetary Sciences
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temperature, precipitation, extreme events and sea level rise (Mediterranean Wetlands Outlook 3, 2025). This project aims at quantifying wetland species vulnerability to different facets of climate change
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with this group to evaluate AERIS at S2S scales, couple ocean component to the model, data assimilation and regional refinement. In particular, this position will utilize generative AI to create a
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. For the project The Role of the Ocean in Earth System Stability PIK’s Research Department 1 Earth System Analysis, is offering a Scientific Position (PhD or Postdoctoral level) (m/f/d) (Position number: 05-2026
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scientific research manuscripts. Minimum Qualifications PhD in the field of earth or planetary science Preferred Qualifications Proficiency with geophysical data analysis and modeling Demonstrated expertise in
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Bay and was ranked #1 College by the Sea by Best College Reviews. Our natural setting is enhanced by its modern, attractive, and state-of-the-art classroom buildings and support facilities. Learn more
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to: i) lead the design and creation of an experimental setup to examine fluid-structure interactions between 3D-printed models of deep sea sponges and ii) lead the formulation and analysis of finite