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of Quantum Nanoscience, TU Delft, to investigate electronic structure and spin-orbit/scalar relativistic effects in lanthanide-containing molecular and periodic systems. Molecules and atoms with unpaired
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-of-the-art labs, clinical partners, and patient organisations, which are preconditions to make a meaningful contribution to the future of sustainable healthcare. Full-time, 30-month postdoctoral position
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biochemical reconstitution, fluorescence microscopy and structural biology to determine how this process is regulated at the molecular level. The project will make extensive use of the group’s in-house Talos
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of Quantum Nanoscience, TU Delft, to investigate electronic structure and spin-orbit/scalar relativistic effects in lanthanide-containing molecular and periodic systems. Molecules and atoms with unpaired
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technology and AI-driven healthcare solutions. Additionally, you will have access to state-of-the-art labs, clinical partners, and patient organisations, which are preconditions to make a meaningful
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models. As a result, your project will inform and enhance decision-making in coastal dune management. The ultimate goal of this project is to build a surrogate wind field model that can feed accurate wind
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mechanisms, approaches, and networks which will serve as the basis for a longer second phase (approval pending) which will build and expand this work. Through this postdoc, we aim to develop approaches
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. TU Delft (Delft University of Technology) Working at TU Delft means contributing to solutions that really make a difference. For over 180 years, we have been training engineers who make an impact
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contributing to solutions that really make a difference. For over 180 years, we have been training engineers who make an impact worldwide in companies, government bodies, or as entrepreneurs. Our alumni turn
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develop luminescent materials for building-integrated photovoltaic (BIPV) technology. You will make and study new types of strongly absorbing sulphide luminescent solar absorber materials, just a few