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candidates working on related topics, including nanoparticle database curation, molecular dynamics-based transport modelling, and reinforcement learning for treatment optimization. Contribute to high-impact
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understanding of intra- and inter-molecular interactions; Affinity with dynamic colloidal or nanoparticle assemblies; Excellent data-analysis and interpretation skills, and an interest in connecting experimental
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investigates fundamental mechanisms regulating heart development and disease, with particular emphasis on how heart rhythm is established at the cellular and molecular levels. We use state-of-the-art model
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studying folding dynamics of complex proteins in isolation or within a condensate environment. For more information, see: https://www.mashaghilab.org and https://www.universiteitleiden.nl/en/science/drug
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at the Van ’t Hoff Institute for Molecular Sciences (HIMS), in close collaboration with our academic and industrial partners. This position is a unique opportunity to bridge synthetic main-group chemistry
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will design a novel, highly coarse-grained model of the nanocarrier and use Brownian dynamics simulations to investigate its assembly and disassembly mechanisms in relation to nutrient loading capacity
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reducing greenhouse gas emissions from Dutch peatlands. In this postdoc position you will work with a range of approaches — including molecular, microbial and geotechnical techniques — to tackle key
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, which is also the part of the interdisciplinary Institute for Complex Molecular Systems (ICMS), in which all polymer-related research groups at the TU/e participate. A description of the group can be