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Field
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Candidates with expertise in at least one of the following areas are welcome: Robotic and mechatronic system design Soft robotics / flexible mechanisms 3D printing mechatronics / robotic integration Human
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key NDT techniques used to inspect metallic and composite materials. These methods generate large 3D datasets that can be difficult for human experts to analyse manually, increasing the risk of missed
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Inria, the French national research institute for the digital sciences | Toulouse, Midi Pyrenees | France | 11 days ago
within CODA for DG discretizations on unstructured meshes has been successfully applied to a range of flow configurations and models, including 2D and 3D detached turbulent and laminar flows using Navier
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from the fetal MRI scans. Additionally, mesh modelling techniques will be developed to create 3D Finite Element (FE) mesh models from the segmented fetal and maternal anatomy. These FE models will then
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Specific Requirements Item 01: Academic training and other courses (punctuation: 30) Item 02: Experience in extracelullar vesicles, 3D models (spheroids, organoids) ando management and processing of human
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Framework Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description PhD Position - C++ Software Engineering of a 3D Cell-Based Tissue
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allowance of £20,780 (2025/26 UKRI rate). Additional project costs will also be provided. Overview This PhD will develop a Synovium-on-a-Chip, using 3D bioprinting, microfluidic engineering, and computational
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Synovium-on-a-Chip, using 3D bioprinting, microfluidic engineering, and computational fluid dynamics (CFD), to create a dynamic, perfused system that mimics the human synovial environment. The platform will
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PHD DEVELOPMENT AND EXPERIMENTAL VALIDATION OF UNDERGROUND SAND-BASED THERMAL ENERGY STORAGE SYSTEMS
mechanical stability. You will support data acquisition and sensor setup for temperature profiling, model calibration and validation. You will apply multi-physical numerical modeling to develop 3D coupled
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of these 3D-printed parts require protective coatings, yet the compatibility between coatings and AM substrates remains poorly understood. Addressing this gap is essential to support the wider adoption of AM in