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mass balance of the northern Greenland Ice Sheet. You will combine airborne observations, satellite remote sensing, and regional climate modelling to understand how changes in sea ice thickness, mobility
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to build a microscopic-to-global understanding of ice formation, plume processes and ocean–surface transport. Their combined efforts will generate new laboratory data, physical models and spectroscopic tools
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Sheet. You will measure sea ice change with satellites, and assess its impact on the northern Greenland Ice Sheet with coupled models. You will collaborate with leading scientists in Germany and The
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toolsets: generating proxy data reflecting surface ocean changes, and simulations of sea level changes using comprehensive ice sheet models. The sea level in the Eemian was much higher than today, 3 to 6 m
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simulation models. Often building on gaming technology, these systems offer an immersive environment where players can explore the real world, adapt it, and inspect simulated effects. Geospatial digital twins
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often debris flows occur and how big and hazardous they are. In this project, we will use uncrewed aerial vehicles (UAVs) and modelling to study how, where, and when sediment is produced in mountain
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, funded by NWO, EMBRACER brings together a wide range of world-leading climate experts with the aim to address existing uncertainties about climate feedbacks at the boundaries between oceans, land, ice, and
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. You will work on the project: Novel experimental turbidity currents in the TurbiFlume. Your job More than 10,000 submarine canyons connect the continents to the deep ocean. These canyons
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of the North Sea maritime infrastructure through AI-enabled, human-centered, and data-driven cyber-physical threat intelligence. This large interdisciplinary project builds on insights from network
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canyons connect the continents to the deep ocean. These canyons are the conduits for transport of land-derived materials to the ocean floor in avalanche-like events called turbidity currents. Turbidity