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during polycondensation Reaction and aging in quasi-2D micromodels of porous media designed in the lab. Results will bring valuable pore-scale information on gelation and polycondensation, not accessible
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understanding, design, production including application and product improvement, materials, processes and (mechanical) systems. ME is a dynamic and innovative faculty with high-tech lab facilities and
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education at the ME faculty focusses on fundamental understanding, design, production including application and product improvement, materials, processes and (mechanical) systems. ME is a dynamic and
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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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and Chemistry Department at TU Eindhoven (Martin van Sint Annaland). Your work will start with the design, modelling and evaluation of resistive heating concepts in collaboration between T.EN, NEM, TU/e
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technology, microscopy instrumentation, and imaging physics, you will design, simulate, fabricate, and experimentally validate a novel MEMS-based transmission electron projection column integrated inside
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, an expert partner in advanced movement measurement and analysis. As a PhD candidate, you will play a central role in the design and execution of this research project. Your responsibilities will include
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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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sustainable and climate-neutral steel production. This PhD project aims to develop an advanced particle-based modelling framework to support the design and optimisation of scrap handling systems for continuous
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designed to balance interoperability, scalability, privacy, performance and transparency for different stakeholders? How can privacy-preserving mechanisms and AI-assisted data engineering support secure and