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around 5%. Existing recycling routes largely downcycle this material into lower-value compounds and do not produce powders with the quality required for advanced manufacturing. This PhD project aims
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Are you excited about the future of wearable healthcare? Join us to merge microfluidics and contact lens technology, developing smart lenses that enable controlled tear fluid collection and analysis
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efficiency. This PhD will focus on developing a specific Digital Twin for steel section production working with our industry partners. Rising energy prices, volatile raw material costs, and increasingly
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scanning and measurement, garment fit evaluation, cloth simulation, digital twins, wearable sensing, smart textiles, and AI methods for clothing and body data analysis, to name a few. Applicants from
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materials. By combining state-of-the-art microscopy, hydrogen testing and fracture mechanics, the group develops fundamental understanding of material degradation in extreme environments and translates
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for future infrastructure and industry. The project was granted by the Dutch national funding agency NWO in 2025. Understanding hydrogen-material interactions at the atomic scale remains one of the most
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develops fundamental understanding of material degradation in extreme environments and translates this knowledge into solutions for the energy transition. Within this position, you will combine advanced
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Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description Can spectroscopy reveal how a breathable material knows when to seal? In
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scanning and measurement, garment fit evaluation, cloth simulation, digital twins, wearable sensing, smart textiles, and AI methods for clothing and body data analysis, to name a few. Applicants from
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2025. Understanding hydrogen-material interactions at the atomic scale remains one of the most complex and urgent challenges in the transition to a hydrogen-based energy system. Since the first discovery