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Doctoral Scholar will lead the microstructure analysis of refractory bcc/B2 alloys, including electron microscopy investigations of microstructures before and after mechanical testing as a function of
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TheBestSteel. This project focuses on the evaluation of steels under hydrogen environments, but also on the microstructure modification to optimise their performance and mitigate hydrogen embrittlement (HE). In
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schools in the world. For more details, please view https://www.ntu.edu.sg/mae/research . We are looking for a Research Fellow to conduct research on additive manufacturing of advanced structural alloys
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Position Description: Conduct research and development as a Postdoctoral Scholar in the Department of Integrated Systems Engineering, with a strong emphasis on microstructure analysis and Multiphysics
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challenges and enhance the performance of recycled aluminium alloys. Responsibilities include developing methods to control solidification, refine microstructure, and mitigate impurity effects, ensuring high
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the supervision of Dr. Merry Mani. The successful candidate will work on the development, validation, and translation of cutting-edge MRI techniques for imaging slow-flowing neurofluids and brain microstructure in
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Description [Background of the recruitment and description of the project] * Background of the recruitment and description of the project The research will primarily focus on advanced microstructural
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Science. Explore new possibilities in the study of 2D and 3D magnetic microstructures using a mix of static and dynamic magnetometric methods, as well as advanced static and dynamic magneto-optical domain
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casting defects and a heterogeneous microstructure, their fracture behaviour often exhibits significant scatter. Improving the understanding of the mechanisms governing this variability is essential
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, calibration, reproducibility) Implementing and maintaining Python-based data processing and analysis pipelines Quantitative interpretation of nanoscale microstructure data in deformation–precipitation