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electrochemistry. You will use supramolecular strategies to immobilize molecular CO2RR catalysts on gas-diffusion electrodes and study their mechanism and performance in electrochemical reduction to ethylene and
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ultrabroadband mid-infrared intrapulse difference frequency generation sources. You will perform multispecies detection in demanding applications such as environmental and exposure monitoring, and in the green
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Universities (CAO-NU) (scale P). This is based on a full-time working week of 38 hours. We offer a temporary contract for 18 months which will be extended for the duration of the project if you perform well
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management to a more sustainable operation. Information The availability of spare parts is essential for the maintenance, repair, and remanufacturing of equipment, thus increasing their useful life. However
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candidate in Resilience Assessment and Management for NaTech-Exposed Process Industries at TU Delft, you will contribute to tackling this challenge directly. You will be part of a research project that aims
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graphs for heterogeneous pavement engineering knowledge aiming to speed up the learning cycle and support innovation and asset management. Job description The increasing accessibility of data in
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management. Job description The increasing accessibility of data in the pavement sector presents new opportunities for improving remaining lifetime predictions. However, developing a future-ready approach
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. This project aims to quantify the MIC-related corrosion damage to existing infrastructure components caused by the transport and storage of SAF, so that the associated risks can be managed. We are looking for a
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enables the Faculty to assess performance against the highest international standards. It also creates an exciting environment of continuous improvement. FEB's programmes, academic staff and research do
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(CAO-NU) (scale P). This is based on a full-time working week of 38 hours. We offer a temporary contract for 18 months which will be extended for the duration of the project if you perform well