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photonic integrated circuits, optical metasurfaces, optomechanics, micro and nano electromechanical systems, and associated precision measurement, quantum information and future computing applications
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) the creation of new-based DNA nanostructures as a molecular template to hold proteins to facilitate molecular imaging by single-particle Cryo-Electron Microscopy (Cryo-EM) (2) the development of DNA-based nano
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interfacial rheology and microfluidics. At the beginning model polymeric particles will be used, such as microgels. With these experiments we will study how the individual particle properties such as softnes
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nanoscale vortex-state particles in rocks and other geological materials. These particles are predicted to be exceptionally stable magnetic recorders, yet their internal magnetic structure and recording
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calcium, zinc, iron, and magnesium within nano-sized core–shell assemblies. You will work in a dynamic, interdisciplinary project combining experimental and computational expertise, and in close
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of blastulas/embryos to polyethylene (PE) MPs of different sizes (nano: 200 nm; micro: 5 µm), including fluorescent ones, in order to study their uptake kinetics and their accumulation in tissues and organs
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consists of three pillars: material characterization (mineralogical and particle analyses), unit operations (such as comminution and separation processes), as well as system engineering approaches (modeling