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motivated Postdoctoral Researcher to contribute to the development and implementation of the ROUTES' monitoring and design evaluation framework, its comparative data analysis, and the ROUTES Atlas co
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, its comparative data analysis, and the ROUTES Atlas co-development. You will help design standardized metrics, indicators, and data collection protocols to assess the short-, medium-, and long-term
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cellular targeting and lamella preparation of frozen-hydrated biological specimen on a unique instrument, with the aim of enabling efficient and reproducible structural analysis of molecular complexes in
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the development of future codes of practice. For the latter, new insights into loading on structures may also be translated into structural response impacts using the structural analysis software OpenSEES and the
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implementation and evaluation. Support and co-lead pilot studies in real CBL classrooms; contribute to data collection, analysis, and interpretation of the agent's performance, attending to both technical metrics
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while keeping heat uniform across the workpiece. Insulation co-design — You co-design the power stage and its insulation system for safe MV operation, using FEM analysis of electric-field distribution
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commercial spectroscopic sensor and gathering relevant fermentation data. The computational component involves signal processing and data analysis. As this project involves a different sensor technology than
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engineering, molecular cloning, genomics, and computational data analysis workflows. In addition you: have obtained, or are on track to obtain, a PhD with first or co-author publications/preprints in
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discipline. A strong curiosity for human gait and neuromuscular control after stroke. Experience with wearable-sensor (IMU) data and human motion analysis. Solid programming skills (ideally, in Python
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discipline. A strong curiosity for human movement analysis and markerless motion capture. Experience with pose estimation, computer vision, and/or synthetic data generation for model training. Solid