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the Australian context, including impurity management, microstructure evolution, ore processing, and the development of green ironmaking infrastructure. Monash University hosts a unique suite of green ironmaking
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implant microstructures. Implement and test topology optimization strategies for designing architected implants subject to multiple objectives (for instance maximum strenght and fatigue life). Collaborate
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details can be found at https://www.net-zero-fibe-cdt.eng.cam.ac.uk/ The project is funded in collaboration with Tracey Concrete, a market leader in precast concrete manufacturing employing innovative
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/mod/aboutand our linkedIn page: linkedin.com/showcase/lmsd-kuleuven/. The PhD will be co-supervised by prof. Varvara Kouznetsova (https://www.tue.nl/en/research/researchers/varvara-kouznetsova ) from
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. Multiphysics modelling of electrochemistry: connecting nanoscale electrochemical phenomena to whole device behaviour. Publications from Prof Unwin and Prof Macpherson (google scholar): https
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high-entropy alloys. Characterize the welded joints microstructurally and mechanically. Report the work in scientific articles. Workplace: The work will be carried out in the CENIMAT|i3N laboratories
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of the design, manufacturing by SLM (Selective Laser Melting), mechanical, microstructural, and thermal characterization of prototypes. The main objectives and results to be achieved are the execution
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microstructural and interfacial phenomena. Development of physics-informed machine learning frameworks (PINNs, neural operators, PyTorch, NVIDIA Modulus) to accelerate simulation and degradation modeling
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for real-time measurements of structural, chemical, microstructural, and phase changes in the material. Another direction is to develop and perform such measurements to gain a comprehensive understanding of
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resources for oral processing research, including the Penn State Sensory Evaluation Center and Food Microstructure and Microanalysis facilities. Collaboration opportunities also exist with the Penn State