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by different means (FTIR, UV-Vis, electron microscopies, TGA, NMR, EPR and elemental analysis, among others). Morphological characteriztion electron microscopy, (SEM, TEM, etc...), DLS, etc. Determine
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(electron microscopy e.g. EPMA, SEM, and X-ray methods e.g. µCT, XRD) Preparing and evaluating solution analyses using ICP MS/OES Publishing and presenting research results at national and international
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includes https://doi.org/10.1101/2025.0... and https://doi.org/10.64898/2025.... Profile You have: An MSc (or equivalent) in structural biology, cell biology, biophysics, bioengineering
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/Qualifications MSc in physics, chemistry, materials science, or similar. Experience working with various nanostructures, especially in electron microscopy (both SEM (Scanning Electron Microscopy) and TEM
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knowledge on AFM, SEM or other charaterisation techinques will be an asset Experience in processing of nitride materials, optical and electrical characterization of nitride devices and quantum structures
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physics and characterization techniques, experience in epitaxy of nitrides by MBE and practical knowledge on AFM, SEM or other charaterisation techinques will be an asset Knowledge about physics of
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-of-the-art epitaxial reactors, including Metal-Organic Vapour-Phase Epitaxy (MOVPE) and Molecular Beam Epitaxy (MBE) reactors, as well as a wide range of semiconductor characterization equipment (such as SEM
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analyses (Raman, SEM EDS, XRF) to study materials and techniques; • Contextual data on stratigraphy, archaeological materials and micro-excavations, whenever possible; • Integration of archaeological
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chemistry and biochemistry applied to sensors. • Knowledge of micro/nanofabrication and surface functionalization. • Ability to work with characterization techniques (SEM, AFM) Specific Requirements -Ability
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of silicon with only preliminary exploration of in-SEM scratching. Building upon the preliminary in-situ SEM scratch exploration, the following extensions and improvements need to be made: Develop a method to