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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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interviews and video research), quantitative (survey development, descriptive/inferential statistics, application of Classical Test Theory or Item Response Theory, etc.), and/or mixed-methods (e.g., convergent
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the microstructural features of high-purity Nb sheets and developing a computational framework to predict their mechanical properties for stamping processes. Conduct research under the Accuride project to examine
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and testing of a new 3D mapping tool. Duties include conducting laboratory and fieldwork, including underwater fieldwork, centered around the research projects; leading fieldwork; preparing and
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fibrosis, in vitro and in vivo testing therapeutic candidates, scRNAseq, spatial transcriptomics, confocal and electron microscopy imaging, flow cytometry, and standard biochemical/molecular approaches. Our