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Field
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conducts pioneered investigations on particle bio-functionalization, particles uptake, accumulation, translocation across biological barriers and their bio-responses. With this we provide key contributions
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The importance of oxide nanoparticles spans from fundamental astronomy (e.g. nanosilicate dust particles) to applied catalysis (e.g. photoactive TiO2 and electroactive IrO2 nanoparticles). Across these fields
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optical physics. Proven experience with experimental laboratory research in one of the following fields: Femtosecond lasers, Ion transfer optics / ion traps, Charged particle detection Excellent written and
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vacuum, charged-particle optics, laser cooling, ion trapping, precision laser spectroscopy, quantum logic and atomic-clock technology. It sits at the interface between atomic physics, quantum technology
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optical spectroscopy, with the drawback that optical excitations alone are already complicated many-particle states, while low-frequency transport experiments are often not directly related to fundamental
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description: GSI Helmholtzzentrum für Schwerionenforschung in Darmstadt operates one of the leading particle accelerators for science. Currently, the new FAIR (Facility for Antiproton and Ion Research) one
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I am an experimental particle physicist and I specialise in the study of particles containing the beauty and charm quarks. My research aims to help improve our understanding our universe by
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of particle transport and fluid–soil interaction in dikes. A key scientific challenge is to represent the complex interaction between soil particles and flowing water across different spatial and temporal
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secondary structures, such as virus-like particles and plasmids. In your PhD project, you will study nanoswitches in a particle-based sensing platform with single-molecule resolution, called Biosensing by
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, particle size distribution, morphology, and flowability. You will then establish additive manufacturing process windows for these circular powders using both binder-free and binder-based additive