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of solving such systems are immense: slow or unstable convergence, lack of robustness, and scalability bottlenecks on modern parallel architectures. As a PhD researcher, you will be at the frontier of tackling
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, the higher operation of such devices poses new challenges in terms of protection, which are still unsolved. Unlike IGBT, wideband gap devices cannot withstand short-circuit currents for enough time
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these methods to quantify phase transformation, plasticity, damage, fracture, and particle volume/sizes for the parameters space that is relevant for wafer handling. Map out the different regimes of silicon
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directly to the upstream swt-initiative31/skija prototype, focusing on: rendering logic. layout behavior. and basic widget implementations. In parallel, they will evaluate how the Skija backend could be
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of Architecture and the Built Environment), where you will collaborate closely with a parallel PhD project within the Faculty of Aerospace Engineering focused on meshfree numerical methods. Together, you will work
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materials with engineered catalytic sites, as part of the HyCARB project. The successful candidate will join a dynamic research team with access to facilities for materials synthesis and parallel catalytic
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. Dr. Tiziano De Matteis (who will be co-supervisor), is an Assistant Professor in the group. His interests are on Parallel and Distributed Computing with a focus on systems and programming models
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organoid formation and expansion. Organoids of different tissues will be tested. The project will be highly collaborative between the three partners. As a postdoctoral researcher, you will be expected
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radar control, data acquisition, and visualisation systems. You'll dive into radar signal processing, tackling high-throughput and parallel data challenges using technologies like CUDA and OpenCL. You’ll
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arms race in which plants produce toxic defence compounds and insect herbivores in turn evolved specific detoxification mechanisms. In parallel to these feeding adaptations, insects also evolved specific