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Field
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, including cryo-FIB/SEM lamella preparation and/or cryo-ultramicrotomy, is a strong advantage; prior exposure or clear motivation to learn these techniques is also highly valued Basic
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with structural and chemical characterizations using state-of-the art techniques (SEM, DRX, XPS, etc.) Experience in PVD and/or ALD is a plus. High-level scientific and technological track record related
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equipment such as, rheometers, tensile testers and other characterisation techniques such as AFM, SEM, TEM, FTIR, XRD, TGA, DSC and fluorescence spectroscopy. To be willing to spend time in other research
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catalytic and/or adsorption tests at large scale Able to examine the textural and structural properties of porous materials using a panoply of characterization techniques such as XRD, N2 adsorption, SEM, TEM
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characterisation techniques such as AFM, SEM, TEM, FTIR, XRD, TGA, DSC and fluorescence spectroscopy. To be willing to spend time in other research groups in Sweden and/or in a foreign country. Our research is
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techniques (UV-Vis, FTIR, Raman, NMR, XRD, spectrophotometry, etc), and microscopy techniques (SEM, TEM, AFM, etc) necessary for structural and physical-chemical characterization of polymer and polymer-based
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uniaxial creep tests (tension, compression) and comparing the results Characterization of the microstructure–property relationship using optical microscopy, SEM and EBSD Correlation of microstructure and
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engine modeling code. Perform high-fidelity CFD simulations of turbulent and reacting flows pertaining to gas turbines and detonation engines using spectral element method (SEM). Perform scalability
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FTIR, SEM, TGA, ICP…) are expected. 3. Application and Selection Process Applications must be submitted online; the folder must contain: A cover letter detailing the candidate's motivation for applying
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workflows to accelerate the discovery and optimization of advanced materials for energy applications. Within the SEMS group at IREC, the main objective is the implementation of an automated experimental