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. The PhD project is part of MADE REACT (Resilient manufacturing systems through AI-powered and digitally Connected Technologies), which is a national collaboration involving 23 leading companies, five Danish
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photolithography, plasma etching and additive manufacturing in the cleanroom facilities at DTU Nanolab. Furthermore, you will characterize the carbon materials and evaluate the electrochemical properties of the 3D
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field where your creativity and technical skills can help shape safer and smarter oceans. As a PhD candidate, you will have the unique chance to contribute to groundbreaking research that merges
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are usually routed from room temperature. Together, these issues make wiring a major obstacle on the path to practical, large-scale quantum computing. While multiplexing can help reduce wiring to some extent
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WBG devices, including GaN and SiC, designing them for superior efficiency and performance. Our goal is to create next-generation solutions that tackle key challenges in the semiconductor industry. We
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involved in the daily supervision of master and bachelor students. You will publish and present your work both at international conferences and in scientific journals with high impact. You will assist in