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                tissue scaffolds, drug delivery and air filtration. Scalable post-processing technologies subsequently allow for the production of functional prototypes for industry partners. This project is an Innosuisse 
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                for the production of functional prototypes for industry partners. This project is an Innosuisse collaboration with a Swiss polymer materials producer and combines electrospinning and crosslinking with scalable 
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                . Empa is a research institution of the ETH Domain. The Laboratory of Advanced Materials Processing (LAMP) is a multidisciplinary research unit that develops innovative functional modification of materials 
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                ) is a multidisciplinary research unit that develops innovative functional modification of materials by beam (e.g. laser light, electrons) and plasma induced processing. LAMP provides full cycle 
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                novel functional materials and devices driven by robust nanoscale quantum effects. We are currently seeking a highly motivated postdoctoral researcher fascinated by quantum nanoscience, with a strong 
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                Laboratory is offering a Postdoc position focused on the development of in vitro simulation models for performance evaluation of antimicrobial coatings. This project aims to tackle the growing challenge 
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                . Empa is a research institution of the ETH Domain. The Biointerfaces Laboratory is offering a Postdoc position focused on the development of in vitro simulation models for performance evaluation 
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                fundamental and applied research. Our efforts range from enhancing the durability of concrete and asphalt to promoting the smart use of resources and waste, and pioneering novel, low-carbon or even carbon 
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                : use of thin steel membranes to investigate hydrogen uptake, diffusion, and trapping under representative microstructural and stress conditions. The three postdocs will collaborate closely across 
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                , advanced materials, and innovative concrete strengthening solutions. Our work combines experimental investigations, analytical modelling, and numerical simulations to develop and validate novel reinforcement