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Field
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involving Fluid Dynamics. Demonstrable affinity with studying the physics of the ocean and preferably with polar oceanography. Experience with numerical modelling. Excellent ability to communicate in both
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substantial intensification of the ocean heat transport, highlighting their climatic influence. However, the dynamics of submesoscale flows, and hence their representation in climate models, have not been
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integrating advanced sediment transport and groundwater flow models, leveraging insights from fluvial hydraulics and new field experiments.The PhD candidate will work on: Collecting and analyzing data from
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collaboration with modelling partners. PhD 2 | Formation and properties of icy grains in plume and spill-out processes You will investigate how oceanic water freezes to become icy grains as it escapes through
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the land-ocean interface: the role of Submarine Groundwater Discharge A PhD position is available in the Physics Department and the Institute of Environmental Science and Technology (ICTA
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or on 1 March 2026. Where to apply Website https://www.academictransfer.com/en/jobs/356609/phd-position-on-arctic-sea-ice-… Requirements Specific Requirements You are enthusiastic and collaborative and meet
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Additional information on beginning, duration and mode of study The starting date of the PhD project is flexible. The initial funding period is usually three years. Find out more at https://www.bgc-jena.mpg.de
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Alfred-Wegener-Institut Helmholtz-Zentrum für Polar- und Meeresforschung | Bremerhaven, Bremen | Germany | 24 days ago
programme Is the Job related to staff position within a Research Infrastructure? No Offer Description Area of research: PHD Thesis Part-Time Suitability: The position is suitable for part-time employment. Job
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be used to emulate expensive climate model processes, such as sea-ice rheology and vertical mixing in the ocean, to deliver forecasts at lower computational cost? This project will develop surrogate
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, visualisation and interpretation using coding (Python or Matlab) and learn to use a 1-dimensional ocean biogeochemical model. You will collaborate with the dynamic Rothera and POLOMINTS (http://polomints.ac.uk