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, state-of-the art research in various fields such as micro-electronics, photonics, microwave techniques and quantum technology are being conducted. The department features a 1500 square meter clean room
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. Information about the division and the department In the Department of Microtechnology and Nanoscience , MC2, state-of-the art research in various fields such as micro-electronics, photonics, microwave
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curiosity-driven and applied-research in the areas of optoelectronics, silicon photonics, and fiber-optic systems. We enjoy a state-of-the-art laboratory for fiber-optic communications and have access to in
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of the leading universities in Europe. The successful candidate will be part of this journey by expanding his/her own understanding of experimental state-of-the-art methods for materials characterisation and
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-of-the-art biophysical methods (spectroscopy, live-cell imaging and nanotechnology) to address cutting edge questions in biology to meet medical challenges related to human health. Our joint expertise is
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) within the Microtechnology and Nanoscience (MC2) department , working in a large team of PhDs, postdocs and researchers. You will have access to state-of-the-art measurement laboratories
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troubleshooting of chromatography and mass spectrometry systems including UHPLC, GC, qTOF, IM-qTOF, MS/MS and other systems. Maintain updated knowledge on state-of-the-art applications and technologies to ensure
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of Microtechnology and Nanoscience (MC2), we pursue state-of-the art research in quantum information science, microwave quantum optics, and mechanical quantum devices. We are also part of the Wallenberg Centre
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and develop protein engineering, synthetic chemistry and state-of-the-art biophysical methos (spectroscopy, live-cell imaging and nanotechnology) to address cutting edge questions in biology to meet
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. We combine and develop protein engineering, synthetic chemistry and state-of-the-art biophysical methos (spectroscopy, live-cell imaging and nanotechnology) to address cutting edge questions in biology