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. Advanced thermodynamic simulation using CALPHAD-based methods, including phase equilibrium modeling in multi-component systems. Comprehensive use of characterization tools, including: SEM, TEM, HAADF-STEM
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/injection molding), morphological characterization (e.g., TEM, AFM, SEM, X-ray scattering), and thermomechanical characterization (e.g., peeling tests, tensile testing, calorimetry, rheology). The laboratory
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(mass spectrometry); chemical-phase analysis of thin films (XRD, XPS and Raman); structural-phase characterization of coatings using electron microscopy (SEM, (S)TEM/HRTEM); TEM preparation (FIB); and
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spectrometry. The project involves developing characterization methods using mass spectrometry (FT-ICR, TOF-SIMS) and imaging techniques (SEM, TEM) for both biological and inorganic materials. Responsibilities
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techniques, including operando TEM or cryo-EM, EC-AFM, etc. Study the structure, chemistry, and dynamics of the electrodes and interfaces/interphases during electrochemical operation, i.e., operando
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for a position at the COE, candidates are strongly encouraged to consider the COE's Mission, Purpose, and Vision to help determine their potential success: https://education.uoregon.edu/about-us. Minimum
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(DC/RF/HiPIMS), PLD, ALD, R2R deposition systems, SEM, TEM, XRD, XPS, Raman, EXAFS, ellipsometry and more. Supportive ecosystem for attracting major EU funding and building strong international
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benefits, visit https://hr.uoregon.edu/about-benefits . The University of Oregon is an equal opportunity, affirmative action institution committed to cultural diversity and compliance with the ADA
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travel arrangements. Processes students, visitors, postdoc and faculty reimbursements through TEMS, ServiceNow and ePayment. Assists other members of the office staff as needed. Triages emails and
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have the unique opportunity to work with state-of-the-art SEM, TEM, UHV STM systems, GC/MS, XPS, and ALD as well as with 3D printing systems (see nano.ceitec.cz). Requirements We are looking for highly