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start on 1st January 2027. Project Description Plastic pollution is one of the defining environmental health challenges of our time. Micro- and nanoplastics (MNPs) contaminate the air we breathe
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., plasticity, damage, fracture) in engineering materials at different length scales, which emerges from the physics and mechanics of the underlying multi-phase microstructure. An integrated numerical
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of complex thermo-mechanical behaviour (e.g., plasticity, damage, fracture) in engineering materials at different length scales, which emerges from the physics and mechanics of the underlying multi-phase
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) for the vehicles of tomorrow. Characterization of PCR and ELV plastic streams in terms of composition, impurities, and material variability Conducting and evaluating physical, chemical, and thermal material analyses
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, engineering plastics and biomedical materials. Growing focus on the use of artificial intelligence techniques to support and accelerate the experimental work, e.g. data interpretation and prediction
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-responsive polymers, coatings, fibres, engineering plastics and biomedical materials. Growing focus on the use of artificial intelligence techniques to support and accelerate the experimental work, e.g. data
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-induced wounds. At the molecular level, frequent exposure to acute or chronic tissue damage in epithelial tissues has recently been shown to activate plasticity mechanisms, with a deep impact on the cells
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plasticity. In this PhD project, you will study whether daily smell training can improve olfactory and cognitive functioning, and whether these effects can be strengthened by adding multisensory immersive
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set up and conduct intervention studies on olfactory training, cognition and brain plasticity. In this PhD project, you will study whether daily smell training can improve olfactory and cognitive
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geological disposal is recognised as the only feasible solution for the final disposal of radioactive waste. In the Netherlands, deep plastic clay formations are considered as potential host formation