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Vacancies PhD positions (3x) on RF/Microwave Gallium Nitride (GaN) MMIC design and test Key takeaways Gallium Nitride: covering the entire chain from device modelling and characterisation, MMIC
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(RF) and microwave-based heating systems for magnetic confinement plasma devices, along with a solid theoretical understanding of wave propagation in plasmas. Hands-on experience with the development
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Job Purpose The successful candidate will contribute to a project focusing on remote RF Sensing and its applications in healthcare involving technologies for both sensing and communications, under
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, potential environmental threats such as microplastics, forever chemicals, underwater noise, and 5G RF-EMFs, pro-environmental communication, and nature and mental health • Internal further training & coaching
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, underwater noise, and 5G RF-EMFs, pro-environmental communication, and nature and mental health Internal further training & coaching: Opportunity to deepen your skills, including statistical methods skills
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norms and behaviours, social processes of change, public understanding of, and concern about, potential environmental threats such as microplastics, forever chemicals, underwater noise, and 5G RF-EMFs
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norms and behaviours, social processes of change, public understanding of, and concern about, potential environmental threats such as microplastics, forever chemicals, underwater noise, and 5G RF-EMFs
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Networks, and ICT Services & Applications. The SIGCOM research group, headed by Prof. Symeon CHATZINOTAS, carries out research activities in the telecommunication and networking systems, including NTNs and
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of dehydration using a low-power radio-frequency (RF) sensor. The research objectives include design optimization to improve wearability, robust data acquisition using machine learning and establishing correlation
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resonance, spin-Hamiltonians and time-dependent perturbations. Our experiments require hand-on experimental use of optics (e.g. lasers, detectors, lenses, etc.), microwave, RF and DC electronics, magnetic