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. This position will be embedded in the Biomedical Diagnostics (BM/d) lab (Signal Processing Systems group, Department of Electrical Engineering, TU/e), and you will be supervised daily by dr. Simona Turco (s.turco
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learning potentials can overcome typical bottlenecks of empirical potentials for simulating dislocations, cracks and hydrogen diffusion near precipitates embedded in ferritic iron. While considerable
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of personalized healthcare through technologies that could make disease detection and monitoring simpler, more accessible, and less invasive. Embedding You will contribute to the research activities
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antenna and RF systems in a fast and accurate manner. In the computational Electromagnetics research group (EMPMC lab), we have been pioneering the “Linear Embedding of Green’s Operators” method, which is
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dislocations, cracks and hydrogen diffusion near precipitates embedded in ferritic iron. While considerable progress has been made in simulating hydrogen behaviour in the presence of defects (e.g., grain
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on the field can be derived from first principles, and how these constraints can improve the technique's performance, particularly when embedded in modern machine learning models. The ultimate goal is to
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embedded in a national project with close collaboration with industry. Responsibilities and tasks The purpose of the project is the design and development of novel photonic WDM switches and the fast control
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mechanisms, and secure AI acceleration for next-generation embedded and edge platforms. Research objectives: Develop FPGA-based emulation and prototyping frameworks to accelerate the design-space exploration
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at the intersection of wireless communications, networking, embedded systems, and satellite technologies. Your research will contribute to the development of reliable, resilient, and sustainable
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environment within the Plasma & Materials Processing group, embedded in TU/e’s strong Brainport ecosystem, as well as tightly connected to other academic partners and industry through national research