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responsibility will be to design and characterize InP-DHBT-based high-efficiency power amplifiers and low-noise amplifiers at sub-THz frequencies, in the D-band (~150 GHz) and H-band (~250 GHz) with performance
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of instrumentation, in particular high-energy instrumentation, i.e. X- and gamma ray detectors and -optics. The division is currently active in the operation of instruments and data analysis from three satellites
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for the float zone process and test these in experiments performed at lab-scale as well as based on operational data from production. Contribute to publishing our models and results in high-ranking journals and
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quantum computing protocols using hybrid detection technologies. Explore the potential of 3D cluster states for fault-tolerant quantum computing. Publish research results in high-quality scientific journals
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the research team. Project management Lead the publication of results in high-impact scientific journals. The ideal candidate will have a strong background in software development and computational modelling
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to ensure they meet performance, reliability, and quality standards Incorporate industry regulations and standards related to sensor technologies Our expectations of you We expect you to have: Bachelor's
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, develop the next-generation high-fidelity BESS models and digital twins that can push the limits of understanding of all battery systems, guiding the battery usage regarding technical performance, economy
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to thrive in the position, we imagine that you have: Proficiency in software development using Rust, C++, CUDA, and Python. Experience with developing high-performance applications and optimizing code
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world for its relaxed atmosphere and high quality of life. Responsibilities and qualifications Sustainability is a central element in DTU’s Strategy, where a strategic aim is “to develop technologies