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Oral Tribology to 4D Micro-CT Failure Analysis”. The laboratory-based project combines dental biomaterials, development of wear-testing methods, mechanical characterisation and advanced X-ray imaging
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diffraction imaging modalities - topotomography, dark-field X-ray microscopy, and Bragg coherent diffraction imaging - has emerged over the past decade that can resolve 3D defect architectures and strain fields
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the Principal Investigator (PI) on one or more research projects. He/she will be required to contribute the followings: • To construct, analyze the medical imaging data, and define the data analytical tasks
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”. The laboratory-based project combines dental biomaterials, development of wear-testing methods, mechanical characterisation and advanced X-ray imaging, with collaboration in restorative dentistry/prosthodontics
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of faceted, nonspherical granular particles. This multi-PI project integrates graph/network theory, granular mechanics, 3D X-ray diffraction and imaging, and discrete element method simulations. The successful
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Join the Hyundai-NTU-A*STAR Corporate Lab and contribute to cutting-edge R&D in AI, Robotics, 3D Printing, and Digital Twins for advanced automotive manufacturing. This role focuses on developing
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sample chamber for growing and imaging live EHT patches, using AutoCAD and 3D‑printing technologies. These tissues will then be imaged using the home‑built microscope system and subjected to various
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and analysis of soil and vegetation characteristics Participate in drone surveys and process and analyze 3D data Collect and analyze dust samples (MWAC samplers) Maintain automated erosion and
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, large language models, AI agents, and 3D reconstruction techniques to generate structured digital representations from multimodal data and support infrastructure monitoring, management, decision-making
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optical imaging tools for high-resolution, 3D whole-body imaging of (living) mesoscopic samples. By making these technologies more accessible, the project seeks to broaden research capabilities and foster