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turbomachinery. In this large EU project, this PhD researcher (DC9) will work at KU Leuven and focus on improving laser machining of ceramic materials for the fabrication of advanced surface features. The goal is
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of laser dynamics. To perform a rigorous benchmark of the most promising strategies with a focus on sensitivity and speed against established techniques to ascertain performance enhancements. Collaboration
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-printing, CAD and CNC machining and/or laser cutting Language Requirements: Excellent command of English (C1), both orally and in writing We offer A modern, dynamic university with a personal and inclusive
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17 Sep 2026 Job Information Organisation/Company KU LEUVEN Research Field Physics » Solid state physics Physics » Quantum mechanics Physics » Applied physics Researcher Profile First Stage
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laboratory conditions with, e.g., lasers. Recent advancements have addressed this constraint through the development of incoherent holographic camera prototypes. These prototypes can decompose incoherent light
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range of 0.5 to 3 bar. The chemical kinetics of nitrogen fixation will be investigated by in-situ plasma diagnostic methods, including time-resolved UV absorption spectroscopy and active laser-induced
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at least one deep-learning framework (PyTorch preferred).•A solid grounding in machine learning. Experience with representation learning, generative models, foundation models or multimodal integration is a
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evidence of excellent study results. You have strong programming skills in C and at least one high-level language (e.g. Python). You have a solid understanding of wireless network stacks and/or experience
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. You have a keen interest in socioeconomic policy issues and social questions, and background knowledge of the working of European welfare states. You have a solid background in quantitative and
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of a locally calibrated fire spread model that accounts for land management and design scenarios (PhD 1) - the generation of near-real-time, high-resolution maps of fuel loads, fuel moisture