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different scientific backgrounds. Strong initiative and passion for science. Open to collaborate with students (BSc/MSc), PhDs and postdocs involved in related project and research groups within and outside
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be supervised by Carla Groenland. You will have the opportunity to collaborate with postdocs, PhD candidates, and other faculty members of the research group in Discrete Mathematics and Optimization
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Engineering. DCSC is an internationally leading research centre where PhD candidates, postdocs and faculty members work on modeling, analysis, control and optimization of complex dynamical systems relevant
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candidates and three Postdoc positions hired on the BILMo project and involved researchers including Dr. Anita Narwani (EAWAG; coordinator), Dr. Keisuke Inomura (University of Rhode Island), Prof. Damien
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representations, and flow matching) for uncertainty-aware 3D reconstruction of coronary anatomy from 2D X-ray angiography; develop physics-informed neural networks and graph-based neural operators for fast
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the first morphological constructicon or “Morphicon” with Dutch as the target language. The resource will be developed by a team of three researchers—the PI, a Postdoc and the PhD—in collaboration with
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postdocs in the SteeleLab in the Quantum Nanoscience Department in Delft. You will meet regularly with your supervisors and other team members, and also be encouraged to develop and explore your own ideas
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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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combines microfluidics, bubble physics, and ultrasound signal processing to bring nanobubble imaging closer to clinical use. You will collaborate closely with a fellow PhD candidate, a postdoc, and a