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selective laser-induced etching (SLE), are used to produce high-precision glass components for the semiconductor industry, medical technology, the optics industry or quantum technology with detailed
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In cooperation with the Chair of Laser Technology at RWTH LLT, the Fraunhofer Institute for Laser Technology ILT, Europe's leading center for contract research and development in the field of laser
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on semiconductor manufacturing and medical technology. Are you passionate about cutting-edge research at the intersection of healthcare, technology and data science? Join our team in European projects
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on semiconductor manufacturing and medical technology. Are you passionate about cutting-edge research at the intersection of hardware design and software programming? Join us as a student and help
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and verifiably safe. We consider resilience and intelligence to be part of the same process. What you will do Quantum computing is predicted as disruptive, emerging technology with potential big impact
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disciplines. The business unit "Biological and Macromolecular Materials" is dedicated to advancing personal care and medical product innovation through the exploration of mechanisms of action and the creation
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produced, which are used in the semiconductor industry, medical technology or the optics industry, for example. One of the current challenges arises from the increased demands of the new applications
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and technologies are primarily aimed at sectors that are particularly important for future viability: aviation, automotive, energy technology, maritime technologies, medical technology and life sciences
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-precision glass components for the semiconductor industry, medical technology or quantum technology with detailed dimensions <1 μm. The spatial and temporal beam shape of the laser pulses is decisive for
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contract research for biotechnological, pharmaceutical and medical technology companies, clinics, diagnostic laboratories and research institutes. For our research group »Clinical Gene Transfer« we