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Field
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transmission electron microscopy characterization of metallic materials, high temperature mechanical testing, and metals processing. Desired Experience: Background and experience in physical and mechanical
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Postdoctoral Researcher (Experimentalist), Melwani Daswani Lab, Earth-Life Science Institute (ELSI),
. Samples will include meteoritic materials, synthetically altered organic analogs, and natural geological samples. A key objective is generating high-quality thermodynamic datasets (heat capacity functions
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. Experience in materials characterization, including single crystal and powder x-ray diffraction, electrical and/or thermal transport, magnetization, specific heat, thermal expansion. Experience in using
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/ Abilities Strong publication record which reflects some combination of the following: Hands on experience with AM technologies, particularly AFSD, cold spray, and LPBF Strong background in materials science
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experience with scanning and transmission electron microscopy characterization of metallic materials, high temperature mechanical testing, and metals processing. Desired Experience: Background and experience
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AFSD, cold spray, and LPBF Strong background in materials science, including characterization techniques such as SEM, TEM, FIB, XRD, nano-indentation, etc. Experience with analytical/numerical thermal
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quantum materials and technology in one of the largest innovation hubs of Nordic countries. We utilize state-of-the-art measurement and nanofabrication facilities at Low Temperature Laboratory and Micronova
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Application in Sodium-Ion Batteries This position is dedicated to overcoming the challenges of limited capacity and high temperatures in conventional hard carbon material preparation through innovative
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design, and big data processing for elevated temperature mechanical property testing results Strong background in high temperature material damage mechanisms Skills in advanced material characterization
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-element high-entropy alloy based on recent literature, with the aim of making this grade ductile in tension. - Optimize ductility through (i) improved densification by SPS at lower temperatures by allowing