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technology integrated into the latest supercomputers, unique opportunities exist to significantly improve the time-to-solution for monitoring emerging pathogen variants. Our group has made several novel
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the opportunity to contribute to advanced research in ion transport and separations, with an emphasis on structural and chemical characterization techniques to assess ion permeability and ion-ion selectivity. Key
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, degradation mechanisms, and electrochemical performance, utilizing a variety of synthesis techniques and advanced structural and electrochemical characterization methods. The appointee will work closely with
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magnetic thin films, patterned structures, and complex interfaces. In this advertised role, you will be conducting real-space imaging of magnetic heterostructures using LTEM to understand spin textures and
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science Considerable knowledge of probing interfacial reactivity through in-situ and operando approaches. This can include synchrotron-based x-ray scattering techniques to probe structure and reactivity
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, especially surface holography, and their application to elucidate the spatiotemporal structure of nanostructures at surfaces and interfaces. The coherence-based probes will align with the capabilities promised
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diffraction characterization and related structural characterization techniques. Strong teamwork skills with a demonstrated history of effectively collaborating with team members and internal and external
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-sensitive catalyst materials Experience with the design and construction of batch and flow reactors for catalysis Proficiency with analytical techniques such as X-ray absorption spectroscopy, nuclear magnetic
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behaviors of MEMS structures. Hands-on experience working with signal processing and RF testing instruments. Strong communication skills for working in a multidisciplinary team environment. Ability
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deposition (ALD). The project involves performing quantum mechanical calculations (e.g., first principles density functional theory (DFT)) to identify the structures and to understand the complex mechanisms