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Field
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, particle size distribution, morphology, and flowability. You will then establish additive manufacturing process windows for these circular powders using both binder-free and binder-based additive
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. Central in your project will be the skyrmion – a nanoscale, whirling magnetic texture. Skyrmions are topologically protected and act like particles; they can be created, moved and annihilated – ideal
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to predict the hydrodynamics and heat/mass transfer in a complete reactor containing millions to billions of particles with basic wall heating. The precise type of reactor will be chosen in collabaration with
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: *Optimal Particle identification of Single Site with Underground MKIDs Detectors; funded by the ERC project ERC OPOSSUM *Development of an Experimental Microsatellite Platform for Extended In-Situ Space
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state estimation methods, including Extended/Unscented Kalman Filters and particle filters. Knowledge of battery degradation, ageing, and state estimation (SOC, SOH, SOP), including diagnostics and
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collation, mixed precision, multi-GPU; experiment tracking (W&B or MLflow), configuration management (Hydra), strict seed and artefact reproducibility. Graph machine learning. PyTorch Geometric or DGL
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research software and working with high-performance or GPU computing environments. Experience publishing or contributing to scientific articles or conference papers. Personal qualifications Good
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architectures and embedded platforms (ARM Cortex-M, NPU, FPGA, embedded GPU), e.g., via academic courses and/or project courses Research experience (e.g., through a Master thesis work or research internships) is
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from the LHC's Run 3, with prospects toward the High-Luminosity LHC (HL-LHC) program. Particle physics studies the fundamental constituents of matter and their interactions. One of the best tools
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self-organization of active particles. § Fabricate and characterize light-driven microswimmers. § Use advanced optical microscopy and particle tracking to analyze their motion and interactions