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experiments (He⁺, H⁺, and Fe²⁺) with advanced microstructural characterization (TEM, FIB, EBSD, APT) to elucidate the atomic-scale mechanisms governing interface stability and helium transport. The ultimate
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the field of materials chemistry, in particular their synthesis using Sol-Gel techniques. The technology centers provide access to advanced characterization techniques (TEM, SEM, PL, thermal analyses, etc
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. The Institute de Chimie Physique, UMR 8000 CNRS, Université Paris-Saclay provides full characterization equipment, which includes the majority of the necessary equipment for the project, such as TEM, Time
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. - Structural and biochemical characterization of DNA origami using TEM, AFM, Cryo-EM, gel electrophoresis, and fluorescence-based assays. - Engineering of dynamic and stimuli-responsive DNA origami nano-machines
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, including health insurance, retirement plans, and paid time off. For more information about benefits, visit https://hr.uoregon.edu/about-benefits . The University of Oregon is an equal opportunity
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robust benefits package to eligible employees, including health insurance, retirement plans, and paid time off. For more information about benefits, visit https://hr.uoregon.edu/about-benefits . The
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or burn-resistant testing demonstrated experience with conducting microstructural characterization techniques such as SEM, TEM, XRD, EDS, EBSD, FIB/SEM etc., as well as physico-mechanical characterization
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The University of North Carolina at Greensboro | Greensboro, North Carolina | United States | 2 months ago
science-related field with extensive hands-on experience in electron microscopy (HR-TEM and SEM). Having exposure to microbiology research, working with bacteria, and interfacing live microbes with abiotic
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expected to: Design advanced electrode and electrolyte materials for aqueous battery applications, and employ various physical characterization techniques (OEMS, EQCMD, XRD, SEM/TEM, XPS) to investigate
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mechanisms. Conduct materials and interfacial characterization using appropriate techniques (e.g., XRD, SEM/TEM, XPS, Raman/FTIR, DSC/TGA), and correlate structure–property–performance relationships. Develop