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approaches often fail to consider lifecycle performance and the unique constraints of AM processes. The PhD candidate will combine materials science, computational modelling to design a novel framework that
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at the research groups of Albert Wong (Chemical Reaction Network lab, at University of Twente) and Pascal Jonkheijm (Biointerface Chemistry Lab, at University of Twente). The materials we develop are societally
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Huskens, MNF is part of the Department of Molecules & Materials, while the group of Prof. Guido Mul, PCS is part of the Department of Chemical Engineering. Both groups are part of the MESA+ Institute and
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regulatory phase-outs. MagHeat tackles this challenge head-on by developing a radically new heat pump technology based on the magnetocaloric effect (MCE). In MCE, certain solid-state materials heat up when
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approach that combines semantic material data, design-for-circularity, and hub logistics to scale high-quality reuse in regional infrastructure ecosystems (primary focus: Twente; validation: Brabant). Reuse
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platforms capable of efficiently tackling some of the most challenging computational problems in science and industry, underpinning applications ranging from materials discovery and quantum chemistry to
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Vacancies PhD-student position on mass production of pancreatic organoids using microfluidic micromaterials Key takeaways Are you passionate about combining material science, microfluidic technology