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Field
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minute tissue specimens, embed them in epoxy resin embedding media, polymerize the embedded tissue, use the ultramicrotome to cut both thick (1 µm) and thin (80 nm) sections, and stain sections, and will
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in a cleanroom Receive hands-on tool training and technical training on fabrication technologies, such as thin film deposition, furnace processing, photolithography, and plasma etch processing Execute
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cooperation with FMI, where E-sail was invented, and 4 companies. E-sail is a highly innovative and potentially disruptive propellantless propulsion system. An operational E-sail consists of hair-thin and
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nanostructures. You will fabricate your own samples in the clean room (thin-film deposition, electron-beam and photolithography, and SEM/FIB-based 3D nanostructuring) and probe their static and dynamic response
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laboratories that support research and development of new nanophotonic devices in the visible and NIR regimes. Atomically thin materials can be stacked to form widely configurable heterostructures with unique
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100%, Zurich, fixed-term The X-ray Imaging Professorship is dedicated to advancing the clinical translation of grating-based X-ray interferometry in close collaboration with industrial partners
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, neuromorphic electronics based on spiking neural networks (SNNs) and the compute-in-memory (CIM) paradigm is emerging as the most promising path. While the research community has so far favored resistive Compute
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staff of around 120, including 66 permanent staff. It has a strong experimental component, with numerous prototype set-ups supported by both standard equipment and high-tech instrumentation
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Postdoc (f/m/d) Methods Development for the Micromechanical Characterization and Modeling of the ...
strategies for developing innovative structural materials for nuclear applications. To do so, we study radiation resistance using ion-irradiated samples, which means characterizing very thin layers close to
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for high-performance infrared photodetectors and imaging systems. We invite applications for two postdoctoral positions focused on next-generation SWIR and room-temperature MWIR photodetectors based on III–V