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framework; Validate the coupled model using published and newly gathered observational data; Conduct numerical experiments to understand responses to changing lightscapes and to unravel future pathways across
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scales continues to be a fundamental area of research, particularly, considering the rapid changes humans induce. The development of numerical models together with the increased availability
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encouraged to build on previous work within the framework of planet formation models. Required skills: Strong understanding of broad aspects of formation of stellar systems, including numerical/hydrodynamic
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with data-based models and numerical dynamo simulations. The successful candidate will contribute to studies of time-averaged geomagnetic field morphologies and core dynamics during transitional events
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Alfred-Wegener-Institut Helmholtz-Zentrum für Polar- und Meeresforschung | Bremerhaven, Bremen | Germany | 1 day ago
analyzing numerical simulations of the Arctic Ocean with explicit tidal forcing to study the role of tides for Arctic Ocean dynamics and sea ice and vice versa Estimating the numerical internal tide
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numerical fluid mechanics, scientific computing, or model-order reduction, who is willing to engage in innovative and interdisciplinary research questions. The successful candidate will also have the
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soon as possible. The position is within the Math+ project "Anisotropic microfluids -- fluctuations, control, effective models and their numerics “. Here, we study anisotropic microfluids and the effect
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with at least 3 years of research experience in a field related to numerical fluid mechanics, scientific computing, or model-order reduction, who is willing to engage in innovative and interdisciplinary
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Electrodynamics General Circulation Model (TIE-GCM) is a global 3D numerical model that simulates the coupled ionosphere-thermosphere system from ∼97 to ∼600 km height. It self-consistently solves the fully coupled
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Alfred-Wegener-Institut Helmholtz-Zentrum für Polar- und Meeresforschung | Bremerhaven, Bremen | Germany | about 12 hours ago
of novel glaciological observations, first-principle theoretical work, and ice-sheet-wide numerical simulations, PHAST will generate new mathematical models and process-level understanding of ice