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multivariate data analysis. Preferred Qualifications: PhD in Chemistry, Materials Science or Chemical Engineering. Candidates are expected to have a strong background in quantitative structure analysis based
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-canonical functions of the vacuolar ATPase. The project involves purification of endogenous V-ATPase from human cell-culture for enzymatic assays, protein-protein interaction studies and structure
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-canonical functions of the vacuolar ATPase. The project involves purification of endogenous V-ATPase from human cell-culture for enzymatic assays, protein-protein interaction studies and structure
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sequence implementation: operate a 3 T Siemens Prisma Fit (and additional 3 T systems if desired) to collect structural and dynamic MRI data. ● Quantitative analysis: develop pipelines for dynamic MRI
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subduction processes. A key aspect of the research involves utilizing seismically constrained crustal rheology and structure to inform and validate our models. The incumbent will need excellent oral and
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growth (PLD, MBE, and CVD methods), crystal, and interface structure determination with x-ray diffraction/scattering/spectroscopy, transport and magnetic property characterization using Quantum Design’s
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subduction processes. A key aspect of the research involves utilizing seismically constrained crustal rheology and structure to inform and validate our models. The incumbent will need excellent oral and
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of advanced quantum photonic devices, based on epitaxial quantum dots or similar structures. Experience in photonic and/or semiconductor device simulation. Brief Description of Duties: The Postdoctoral
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subduction processes. A key aspect of the research involves utilizing seismically constrained crustal rheology and structure to inform and validate our models. The incumbent will need excellent oral and
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of advanced quantum photonic devices, based on epitaxial quantum dots or similar structures. Experience in photonic and/or semiconductor device simulation. Brief Description of Duties: The Postdoctoral