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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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and curing protocols to rapidly obtain (e.g. in 28 days) concrete samples whose microstructure and properties reflect those of aged samples, in terms of mineral composition, mechanical strength
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Science, develops methods and quantitative approaches to investigate nano- and microstructural features across soft matter, biological tissues, as well as metals and alloys. Our work combines X-ray and
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investigates how microstructural design in polycrystalline functional oxides, such as grain size, crystallographic orientation, and strain, can be used to enhance and control the caloric cooling performance
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nanoparticles. The goal of the PhD will be to seek mechanistic insight into the electrode polarization processes as well as strategies for improving performance by optimization of composition, microstructure, and
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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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schools in the world. For more details, please view https://www.ntu.edu.sg/mae/research. We are looking for a Research Fellow to assist the PI in conducting research specified in a sponsored project. The
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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 assist the PI in conducting research specified in a sponsored project. The
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valorisation, degradation kinetics & durability, mineralogical phase characterisation of materials, lab-based testing on electrochemical techniques, microstructure performance evaluation and computational
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technologies (such as computing and sensing), and low-temperature energy systems for space and satellite applications. The project investigates how microstructural design in polycrystalline functional oxides