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Field
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, AFM), spectroscopy (e.g., XPS, Raman), or thin-film/materials analysis; strong understanding of metrology principles, including calibration, measurement uncertainty, repeatability, and data integrity
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to FIB, (S)TEM, XPS, FTIR, and Raman spectroscopy. Department: https://cne.ucsd.edu/ Qualifications Basic qualifications (required at time of application) -Ph.D. in nanoengineering, materials science
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of MOF-guest interactions, advanced characterization of MOF materials using techniques such as PXRD, Raman and infrared spectroscopy, UV-vis spectroscopy, XPS, SEM, and TEM, environmental impact assessment
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characterisation of the obtained nanomaterials using spectroscopic, chromatographic and microscopic methods; conducting analyses using techniques such as UV-Vis spectroscopy, FT-IR/Raman spectroscopy, high
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., Raman Spectroscopy in Cultural Heritage Preservation, Springer, 2022 Madariaga, J.M., Analytical Strategies for Cultural Heritage Materials and Their Degradation, RSC, 2021 Pop, V., Chicinaș, I., Jumate
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in specialized software for data analysis and graph preparation (e.g. Origin, Gwyddion, ImageJ) - Ability to operate a scanning electron microscope (SEM) - Ability to operate Raman and UV–Vis
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International B.V. (Industrial) Project description: Confocal Raman spectroscopy (CRS) is a non-invasive in vivo technique increasingly used to quantify the penetration of topically applied substances within
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of professor or the academic degree of postdoctoral in the physical sciences discipline. Documented experience in applying advanced research methods (e.g., Raman spectroscopy, SEM/EDS, AFM, SIMS, GDS
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requirements: - Experience in sample preparation and characterisation using techniques such as SEM-EDS, XRD and Raman spectroscopy; - Experience in structural/crystallographic analysis, including proficiency in
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rapid detection of microbial bioburden in biopharmaceutical cleaning validation using a Surface-Enhanced Raman Spectroscopy (SERS) biosensor platform. Responsibilities include next-generation sequencing