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Experience with either optical wave propagation simulations (e.g., Finite-Difference Time-Doman, Rigorous Coupled Wave Analysis, FEM) for metaoptics or experimental experience with metaoptics Department
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Experience with either optical wave propagation simulations (e.g., Finite-Difference Time-Doman, Rigorous Coupled Wave Analysis, FEM) for metaoptics or experimental experience with metaoptics Department
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and research crystallography to Indiana University faculty. Services include routine and non-routine small-molecule single-crystal X-ray structure determination and X-ray powder diffraction analysis as
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characterizing photophysical (e.g. UV-vis spectroscopy, photoluminescence spectroscopy, quantum yield analysis, or lifetime analysis) or mechanical (e.g. dynamic mechanical analysis, rheology, or indentation
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time for Biology — enormous advances in global genome analysis coupled with unprecedented developments in interdisciplinary research have made the 21st century the Century of Biology. For more
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University focuses on the synthesis and spectroscopy of colloidal inorganic nanomaterials, particularly binary and ternary transition metal oxides, chalcogenides, and pnictides. Research topics range from
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experience conducting human subjects research, including data collection, analysis, and interpretation. Must also demonstrate strong scientific writing skills. Preference will be given to those with expertise
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microscopy analysis, and performance evaluation of nanocrystal catalysts for energy conversion applications. In this federally funded project, the postdoc will collaborate with scientists at other US
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techniques (e.g. NMR, IR, UV-vis spectroscopy, Mass spectrometry, and X-ray diffraction) necessary for characterizing new molecules and polymers. Experience with photochemistry (e.g. quantum yield analysis
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. Substantial experience with in-vivo extracellular electrophysiology in freely behaving rats. Fluency in related data analysis (e.g., Python, MATLAB). Preferred: Expertise in one or more of the following areas