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are analyzed, designed and built. The Electrical Engineering department takes its inspiration from contacts with high-tech industry in the direct surrounding region and beyond. The department is innovative and
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across relevant temperature, composition, and redox conditions, and translating these insights into predictive models for industrial application. You will design and conduct high-temperature equilibration
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on selected instrumented railway bridges. Building on these insights, an on-board measurement system (e.g., based on Axle Box Acceleration (ABA) or Laser Doppler Vibrometry (LDV)) will be designed and
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Develop CMOS-compatible broadband photodetectors for compact spectropolarimetric cameras. You will design, fabricate and characterise detector structures for space-based Earth observation. Job
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develop fundamental insights that enable improved catalyst and process design. This project is embedded in the HyCarb consortium , where academic and industrial partners collaborate on advancing sustainable
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, you design various components of the research. You conduct research that results in a dissertation and aligns with the objectives and requirements of the project. You perform quantitative data analysis
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learning pipelines for multilayer segmentation and nanoscale transistor classification from microscopy images; (b) Designing graph-based inference models capable of reconstructing higher-level logical blocks
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to plan for the future. Therefore, the system in which planning decisions regarding climate-proofing the city are made should be well understood to identify the factors that lead to the success or failure
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of materials related to e.g. climate change, modelling and design of railway systems, multi-scale modelling of pavement materials and structures, reuse of materials, structures and parts of structures
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. These computational models can provide crucial mechanistic insights into the key parameters governing these processes, inform targeted in vitro experiments, and help design better biomaterials and TE strategies