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or hard constraints, operational bounds (voltage limits, capacity, phase balance), and network topology through graph neural network architectures. You will build validated benchmark datasets and an
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other focuses on sensor characterization and on electrical and calorimetric efficiency measurements. Choose the research direction that fits you: PhD 1 on Wideband current sensors has the primary emphasis
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nanofabrication, 2D materials and electronic transport, and develop sample architectures that can be transferred between measurement platforms. A central goal is to connect the structure of a fabricated
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structural and logical information from complex semiconductor architectures under realistic imaging constraints. Specifically, the researcher will focus on the following three main tasks:(a) Developing deep
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architectures are expected to operate in diverse and critical environments such as hospitals, data centers, industrial sites, and isolated power grids. In this context, microgrids must: • Operate in grid
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activity, while manipulation of voltage, clock, or electromagnetic conditions can cause security mechanisms to behave in unintended ways. At the same time, modern embedded architectures increasingly
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above Academic publications and popular science dissemination Participate in the research group Critical Infrastructure Security and Resilience (https://www.ntnu.edu/iik/cisar ) Participate in
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Political sciences Sociology Communication sciences Architecture Researcher Profile First Stage Researcher (R1) Positions PhD Positions Application Deadline 30 Apr 2027 - 12:00 (Europe/Berlin) Country Germany
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neural networks (GNNs), transformer architectures, foundation models, and large language models (LLMs). Experience developing reproducible biomedical software and AI workflows. Demonstrated success
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architecture (meta)materials for medical soft robotics applications. Furthermore, the morphology, microstructure, and mechanical behaviour of the metamaterials for soft robotics applications will be