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Field
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within the broader project consortium. Capture the multi-scale nature of pipe formation while maintaining computational efficiency, including the exploration of adaptive mesh refinement strategies
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generation hybrid RF and optical wireless communication networks. You will be working within the newly granted The Netherlands Growth Fund 6G-FNS (Future Networks and Services). Information Future wireless
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the cell response. A key innovation in this PhD project is to engineer environmentally (cell)-instructive hydrogels with controlled architecture (pore size, network interconnectivity) and mechanical
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, mainly upstream of information and communication technologies. The research at PHELIQS aims in particular at understanding and controlling original physical effects, generally of quantum origin
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. This project investigates how such patterns can be designed systematically to make communication timing difficult for an external observer to predict, while maintaining closed-loop stability and using network
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detection and free space estimation. However, current neural networks are typically developed for a specific radar configuration and task, and often generalize poorly to other sensors. At the same time, large
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opportunity to gain experience in teaching and supervision. You will become a member of the Network of Young Scientists (NYS) within CH2ESS, which organizes workshops, field excursions, interdisciplinary
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of skyrmionic entities just by design. That’s the challenge you will address, to open up new horizons in fundamental research, but also to enable non-conventional, more sustainable ICT solutions. Within
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, international, and interdisciplinary environment. This position is part of a Marie Skłodowska-Curie Doctoral Network. Applicants must satisfy the MSCA mobility rule: at the time of recruitment, they must not have
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to science, engineering and society. You will focus on optimization-based, data-driven and partially model-based control methods. You will have access to a strong research network and a broad range of