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life cycle assessment based on BIM models. • Development and structuring of a database to support dynamic life cycle assessment. • Implementation of blockchain solutions for circular products, integrated
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Materials Science, Characterisation Materials Science, Defence Composite Materials, Functional Composite Materials, Energy, Nanomaterials, Low Dimensional Materials, Biomaterials Materials, Biological
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in situ across length scales and relate their structure/organization to fertility phenotypes. The work includes include (i) investigating the 3D structure and composition of unknown macromolecular
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The School of Civil, Aerospace and Design Engineering (CADE) is seeking to make a permanent appointment to the position of Lecturer in Composite Structures, working in the internationally leading
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from bulk structures (e.g., Materials Project entries), automatically construct surface slabs, and create targeted compositional variants and vacancy configurations. You will implement and refine post
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composites for enhanced durability, performing microstructural analysis and mechanical testing. Topology Optimization & AI Integration: Use AI and machine learning to guide structural and topology optimization
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structures, integrating morphing wings and additive manufacturing processes for high-performance and energy-efficient drones. Keywords: Morphing wings, composites, additive manufacturing, aerodynamics, UAV
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) along with adjustment of their composition and optimisation of printing parameters. Design of antennas, matching circuits and rectifiers for RFEH structures, as well as design and supervision
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of skin organoids requires 3D reconstruction to account for changes in tissue composition and structure. The appointment has an expected start date on or around April, 2026. The initial term of the position
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project is focused on the development and validation of next-generation self-healing multilayer composites for space structures. These materials aim to enhance the durability and safety of inflatable