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Assessment and non-animal methods (NAMs). We combine in vitro molecular biology, mass-spectrometry-based proteomics, bioinformatics, evidence synthesis and computational modelling to understand how
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, and simple: key goals for future 6G networks and the Internet of Things. Using mathematical modeling, computer simulations, and practical experiments with software-defined radios, the research will
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, proteomics and computational methods to understand how chemicals affect human health, with a particular focus on endocrine disruption and women’s reproductive health. Job description We are seeking a highly
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multimaterial and multifunctional microdevices, combining microfabrication, rapid prototyping, mechatronics, and advanced computational methods. You will contribute to pioneering work in soft robotic systems with
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develops AI-native and ISAC-enhanced resource management methods for programmable wireless environments, including reconfigurable intelligent surfaces, metallic reflector arrays, and stacked intelligent
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the following: Courses taken and background in some of the following areas: Advanced composites, Adhesion and surface modifications, Finite element methods, Materials modelling, Micro-test methods, Electronics
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, cybersecurity, and optimization to develop next-generation methods for monitoring, decision-making, and resilient operation of safety-critical cyber-physical systems. We combine fundamental research with
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(PhD student) position in Antenna Engineering. The main research topic will be antenna engineering including RF engineering, including but not limited to topics such as: Mobile phone antenna design and