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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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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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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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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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engines and quantum field theory in curved space-time. These two parts of the project are designed to interact closely: mathematical tools concerning entropy, randomness and operator algebras feed
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Help redefine cancer treatment through nanomedicine. We are seeking a highly motivated PhD candidate to work at the cutting edge of lipid nanoparticle design & molecular modeling Job description
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of researchers dedicated to high-quality research and education with a strong commitment to societal impact. Research within MSCM spans topics such as consumer behavior, digital marketing, service innovation
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, and which are directly relevant to urban policy and investment issues. Your activities will include: Developing and implementing a research design for an integrated societal and financial cost-benefit