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plumes or surface cracks. Laboratory plume simulations, ice-grain characterisation and volatile diffusion measurements will reveal grain structure, trapping efficiencies and their spectral fingerprints
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mechanical testing (four-point bending, ITT), as well as advanced numerical simulation. The project is carried out in collaboration with Liverpool John Moores University (LJMU) and several industrial partners
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experiments and numerical simulations to understand and predict the clogging evolution in a range of geological media by: Quantifying physical and chemical clogging dynamics across a spectrum of rock types
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of computational power over the last decade has enabled scale-resolving simulations (SRS) of turbulent flows at an unprecedented resolution. In combination with high-performance computing (HPC), parallel
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Job description The exponential increase of computational power over the last decade has enabled scale-resolving simulations (SRS) of turbulent flows at an unprecedented resolution. In combination
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; and running regional climate model simulations to project future Greenland surface mass balance under different sea ice scenarios. You will work within a close collaboration between IMAU and AWI
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a requirement. Interest and willingness to perform numerical many-body perturbation simulations. Written and oral proficiency in English. What we offer Our goal is to work together to create a
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Physics, Electrical Engineering or a closely related field. Demonstrable skills in numerical modeling, simulation, and data analysis. A solid understanding of Physics, Optics, Electron Optics and microscopy
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Applied Physics, Electrical Engineering or a closely related field. Demonstrable skills in numerical modeling, simulation, and data analysis. A solid understanding of Physics, Optics, Electron Optics and
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strong energy systems knowledge, electricity, heat, and gas netwrok modelling & simulation, and research software development skills that want to develop cutting-edge knowledge and software for the energy