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solutions that combine low energy consumption with reliable and safe operation in compliance with relevant standards and regulatory requirements. A key scientific challenge addressed in this project is the
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between 1990 and 2016. As cities expand and urban heat intensifies, efficient and reliable cooling infrastructure becomes critical. Yet current systems suffer from persistent challenges: design oversizing
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. To thrive in this role, it is important that you take a structured, self-driven approach to technical work and communicate effectively within the team and with external partners. While not required, it will
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a person, you are expected to be structured, reliable and able to work independently, while also contributing positively to a small, collaborative and international team. You should be comfortable
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, including vision, LiDAR, inertial measurements, and radio signals, to maintain coherent spatial awareness and act reliably under uncertainty. A particular focus will be placed on learning and decision-making
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paradigms. The position should encourage interdisciplinary engineering approaches, including AI, modeling, sensing technologies, and data-driven methods, aimed at improving battery safety, reliability, and
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Systems section and work on the development of advanced antenna architectures that enhance the reliability of the communication link between the drone and the operator. Your focus will be on replacing
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, reliability, stability, control, and degradation mechanisms in integrated electrical energy and conversion systems. The position is designed to strengthen our research platform through complementary
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challenges. Adaptable, flexible, and reliable. Strong planning and organizational skills, with a keen attention to detail. Proven experience working in molecular biology laboratories, preferably within
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who is meticulous, reliable, and highly aware of contamination risks. The ideal candidate will be comfortable with repetitive precision work, careful record keeping, and strict laboratory routines. We