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within mathematics, data science, computer science, and computer engineering, including artificial intelligence (AI), machine learning, internet of things (IoT), chip design, cybersecurity, human-computer
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to innovate at the leading edge of science, working on groundbreaking projects focused on both the structural and electronic characterization of quantum materials. At DTU energy, our research focuses
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, data science, computer science, and computer engineering, including artificial intelligence (AI), machine learning, internet of things (IoT), chip design, cybersecurity, human-computer interaction
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computer engineering, including artificial intelligence (AI), machine learning, internet of things (IoT), chip design, cybersecurity, human-computer interaction, social networks, fairness, and data ethics
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Job Description We warmly welcome motivated researchers who are fueled by ambition and a zeal to join us in forging new frontiers in power electronics. An exciting opportunity awaits you at
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can read more about career paths at DTU here . Further information Further information may be obtained from Associate Professor Leticia Hosta-Rigau, email: leri@dtu.dk . You can read more about DTU
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functionalization. The primary synthesis technique will be hydrothermal. Characterization with a range of advanced techniques e.g. electron microscopy, Raman and infra-red spectroscopy, XPS, Zeta potential
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maturity and business readiness. In this position, you will work in close collaboration with companies in the sectors of metal products & components, mechanical & electro-mechanical products, electronics
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computer engineering, including artificial intelligence (AI), machine learning, internet of things (IoT), chip design, cybersecurity, human-computer interaction, social networks, fairness, and data ethics
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and relevance of the project Optically Stimulated Luminescence (OSL) is a multi-step phenomenon driven by the transport of electrons and holes across defects in the crystal lattice. Traditional models