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within the School, the University and across the Nextrode consortium. There may also be opportunities to include experimental work, microstructural assessment, data science or other relevant areas. Main
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processes of thermoelectric materials (e.g., SPS, hot pressing) and optimization of technological parameters affecting microstructure and thermoelectric performance, proven competence in measuring and
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demand systematic experimental studies that will investigate build characteristics such as microstructures, precipitates, etc., besides functional properties such as static as well as dynamic loading
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, to collect data on the weld and Heat Affected Zone dimensions, including defect presence and the microstructures that results. The approach will be validated with known materials, and demonstrated with
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the microstructure. The successful doctoral candidate (DC) will develop a microscopic model for heat transport and reactions in redox flow battery electrodes. The DC will use pore-scale direct numerical simulations
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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