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Field
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drug discovery efforts. Key Responsibilities 50% TEM sample preparation, including for single particle analysis and FIB-milling SEM 15% routine maintenance of facility equipment, including sample
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be characterized by microscopy techniques such as TEM, SEM, and AFM, and spectroscopic methods such as XPS, UPS, EELS, and EDX. Close cooperation with Doctoral Candidate 2 (DC2) will be expected
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of carbonaceous, composite covalent anode materials in SIBs, and multifunctional ion-conductive polymers in rechargeable aqueous ZIBs, is expected. Operando experiments will be compared with ex-situ TEM analysis
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manufacturing (printing, deposition) Working experience in clean room is highly valued Both hands-on and data analysis skills in classical materials characterization methods (i.e., TEM, SEM, XRD, XPS, NMR, IR
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the COE, candidates are strongly encouraged to consider the COE Mission, Purpose, and Vision to help determine their potential success: https://education.uoregon.edu/about-us. Minimum Requirements
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, deposition) Working experience in clean room is highly valued Both hands-on and data analysis skills in classical materials characterization methods (i.e., TEM, SEM, XRD, XPS, NMR, IR, Raman, XAS, SAXS, etc
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Business Analytics (https://business.uoregon.edu/departments/operations-business-analytics) in the Lundquist College of Business seeks talented pro tem faculty passionate about teaching and learning. Pro Tem
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imaging and signal processing. Proficiency in standard characterization techniques such as Coulter counter sizing, confocal and fluorescence microscopy, TEM, and absorbance/fluorescence spectroscopy. Strong
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, early life, hot springs, and pattern formation. Experience with general (geo)chemical laboratory skills. Experience with analytical techniques such as micro-CT, SEM, TEM is an advantage, as
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, TEM, DSC, XRD, FTIR, TGA, BET, etc.) to correlate fabrication-structure-property-performance of novel nanomaterials with sustainable membranes for desalination and water purification via separation