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the synthetic dimensions with the feedforward-based architecture and observe the dynamics of photons in time-frequency domain. The job is within the Villum Experiment project FENIX. As part of your work, you will
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. The project focuses on high-precision optical computing for neural network applications and leverages a radically new digitized optical computing architecture. You will play a central role in advancing
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high academic quality and societal impact. The Department of Electronic Systems employs more than 200 people, of which about 90 are PhD students, and about 40 % of all employees are internationals. In
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, including robotic control, mechanics of materials, fluid mechanics and biological systems, in collaboration with other researchers and companies. Your profile Applicants should hold a PhD in Computer
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, including robotic control, mechanics of materials, fluid mechanics and biological systems, in collaboration with other researchers and companies. Your profile Applicants should hold a PhD in Computer
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device-to-architecture level models of emerging nanoscale devices (spintronic, resistive, or hybrid) for in-memory and neuromorphic computing. Exploring hardware-level security mechanisms based
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potential to Danish growing conditions; evaluate the adaptability of these accessions and investigate their genetic background; Uncover the genomic, metabolomic and sensory architecture of edamame taste and
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Collaborating across domains, including civil/architectural engineering and energy management This position is deeply interdisciplinary, and will be carried out in close collaboration with The successful
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will be in developing new techniques for testing and verifying modern highly concurrent systems, such as weak-memory architectures and highly-distributed databases. The position is also open, to some
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academic or industry leadership roles. Your profile Applicants should hold a PhD in Computer Science, Electrical Engineering, Computer Engineering, Telecommunications, or a similar field, with a strong