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in multilayer electronic devices -Identifying/optimizing novel polymers and photosensitive materials for additive manufacturing -Developing femtosecond/picosecond laser-based micro-drilling and
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small, contribute to a better world. We look forward to receiving your application! We are looking for a PhD student in next-generation thin-film lasers. Your work assignments The project, funded by
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crystallisation of proteins over their biochemical and biophysical characterisation to photochemical activation and advanced, up to date structure determination using cryoEM, synchrotron and Free Electron Laser X
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one of the most promising materials for next-generation optoelectronic devices, particularly in solar cells, LEDs, photodetectors, and lasers. Their rapid rise in efficiency, from ~3% in 2009 to over 26
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conducts research in energy technology, laser spectroscopy, medical technology, electronics, and system engineering. We are recruiting a PhD student in energy technology with a focus on thermal process
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Theory group conducts theoretical and computational research on a broad range of plasma environments, with a focus on acceleration and radiation generation in magnetic fusion, laser-produced and
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crystallisation of proteins over their biochemical and biophysical characterisation to photochemical activation and advanced, up to date structure determination using cryoEM, synchrotron and Free Electron Laser X
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in oral and written English communication. Other relevant but not mandatory qualifications: Knowledge of laser directed energy deposition and powder bed fusion Experience in sensor data analysis
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: Advanced testing on available car- and truck-sized engines. Detailed optical investigations of fuel injection, mixing, and combustion processes using high-speed video imaging and laser-spectroscopic
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explores new low-temperature techniques for ultra-low-loss waveguides and high-performance lasers using microtransfer printing. This recruitment is part of the Wallenberg Initiative Materials Science for