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master students. You will join the Multiscale Simulation of Biomolecular Systems group of dr. ir. Ioana M. ILIE, part of the Computational Chemistry research group within the Van 't Hoff Institute
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gaps exist regarding the multiscale behaviour of these treatments, from microscale pore interactions to macroscale building performance. This project will advance beyond the state of the art by
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formulations (e.g. hydrogels). Lithography for multiscale hierarchical 3D substrates, e.g. 3D nanoimprint, 3D deep UV or 3D X-ray lithography. Bottom-up tissue engineering based on micro and nanoengineered
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formulations (e.g. hydrogels). Lithography for multiscale hierarchical 3D substrates, e.g. 3D nanoimprint, 3D deep UV or 3D X-ray lithography. Bottom-up tissue engineering based on micro and nanoengineered
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suboptimal thermal performance and energy inefficiencies. This programme focuses on the development of multiscale models that will improve our understanding of how microstructural changes in materials and
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. To fill-in this gap, you will use hierarchical molecular simulations to produce high quality thermodynamic, transport, and kinetic data that can be used for multiscale model development. We will focus both
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will collaborate with a fellow PhD candidate and a postdoctoral researcher on integrating differential privacy into the generative pipeline, balancing privacy guarantees against data utility. You will
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postdoctoral researcher and experts from multiple disciplines, you will integrate proteomics with other advanced molecular datasets to identify novel biomarkers for disease prevention. Your responsibilities
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in close collaboration with with a postdoctoral researcher and a fellow PhD candidate, you will identify microbial taxa and microbial interactions that are most strongly associated with disease
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experts on dynamical systems and ergodic theory, postdoctoral researchers Josias Reppekus and Misha Hlushchanka, both active in different areas of complex dynamical systems. PhD students and postdoctoral