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Field
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on well-identified frames), validated models in operational conditions (New models based on real in-situ observations and mechanism). Microstructure manipulation for tailoring macroscopic response: Toughing
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on well-identified frames), validated models in operational conditions (New models based on real in-situ observations and mechanism). Microstructure manipulation for tailoring macroscopic response: Toughing
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on Cu and Cu-based alloys, including process optimisation and development of scalable powder mixing approaches. Perform microstructural and mechanical/electrical characterisation, apply computational
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Entropy Alloy (HEA) compositions suitable for Additive Manufacturing (AM) Develop a multiscale methodology to select compositions and microstructure with optimized fraction Establish and optimise Powder Bed
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structure and phase purity using X-ray diffraction. Prepare samples for TEM using plasma FIB. Analyze the microstructure, interface sharpness and defect distributions using TEM. Correlate MBE growth
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well as microstructure. (5) To investigate post processing steps, including thermal treatments, surface finishing, weldability, etc. (6) To evaluate the best AM technology for producing the targeted components and
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Aluminium Alloys We are seeking a highly motivated PhD candidate to join a project focused on understanding how the microstructural heterogeneity of recycled aluminium alloys affects their ductility and
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, SPM, AFNI, or equivalent Advanced preprocessing: geometric distortion correction, harmonization, registration, longitudinal QC Diffusion MRI (tractography, microstructural models) Functional
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for space and satellite applications. The project investigates how microstructural design in polycrystalline functional oxides, such as grain size, crystallographic orientation, and strain, can be used
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for retrieval of nanoscopic information from their surfaces, microstructural information from their gut content as well as relating insect abundance to CO2 and heat convection cells in the atmosphere. As a