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Field
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on the implementation of an innovative technique called 3D-AFM (the only one of its kind in France) that makes it possible to characterize liquid/solid interfaces at the nanometric scale by studying the behavior
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spread of corrosion. Thus, long-term 3D mapping and change detection is of great interest for remote maintenance. Previous research at the Oxford Robotics Institute has developed a real-time 3D LIDAR
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About the project: From Brittle to Ductile: Machine Learning 3D Fracture Simulations for Extreme Environments Supervisor: Prof, James Kermode, University of Warwick Develop cutting-edge machine
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solvents cause environmental concerns, with long supply chains leading to extensive carbon footprints. This studentship will be part of a broader vision to leverage the latest advances in 3D printing
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We are seeking a highly motivated candidate to undertake a PhD program titled "3D Temperature Field Reconstruction from Local Temperature Monitoring in Directed Energy Deposition." This exciting
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to molecular indicators alone. We have now at our disposal a novel nanometer resolution 3D correlative imaging pipeline that combines light and X-rays and allows us to utilise the cellular landscape as a useful
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development of new 3D nanoscale thermal metamaterials. If you want to play at the nexus of quantum, advanced materials, and thermodynamics, to design and create intricate nanoscale geometries that allow you to
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multidisciplinary team and possess a proactive, innovative approach to problem-solving in research. Desirable skills: Prior experience with hydrogel development, 3D cell culture techniques, and a thorough
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modifying geometry and re-running CFD, the research will develop models that map aerodynamic requirements directly to 3D blade geometries and associated flow fields. The project builds on a proven 2D inverse
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Architecture Design (Social Science) might be for you. We are seeking an enthusiastic, self-motivated, and resourceful PhD student, to contribute to the generation of new knowledge on the topic of 3D digital