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Field
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PhD research will focus on characterizing and optimizing architectured fabrics and textiles using 3D micro tomography as a main tool to investigate tribological and thermal properties of different
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unified artificial intelligence (AI) model capable of segmenting 3D medical images from standard clinical scans and generating 3D meshes across multiple imaging modalities. The project will also investigate
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methods to create precisely controlled 3D structures Developing routes the depolymerise and re-print the materials in a closed loop manner Undertaking analysis to understand the green chemistry and
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quantitative image analysis, numerical modeling, and explainable AI (XAI) with state-of-the-art biophysical methods. Using techniques such as traction force microscopy, microfluidics, 3D bioprinting, and
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EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description PhD Position in Advanced 3D Organotypic Bone Models for In Vitro Osteosynthesis Research
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arquitectura con madera. English: Collaboration in the following tasks: - Analysis of the productive sector and architectural production using hardwood. State-of-the-art review. Creation and management
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Ready to shake things up in aerospace manufacturing? Join us in developing next-gen quality assurance methods for 3D-printed metal parts using vibrations, AI and physics-informed models, and help
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involved in various growth processes throughout the plant life cycle. Main objectives will be the prediction of GA-binding residues, their validation using molecular analysis, and the screening for novel GA
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systems are still struggling to convey compelling tactile sensations for 3D interaction. The project ADVHANDTURE aims at introducing an original computational approach for handling multimodal tactile
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Supervisors Primary Supervisor - Dr Calum Williams Secondary Supervisors - Dr. Maciej Dabrowski , Prof Simon Horsley This PhD studentship will develop 3D-printed optical metamaterials to control