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phonon states in a variety of engineered quantum systems. https://www.oist.jp/research/research-units/qmsu [Work content and job description] -Basic evaluation of substances and materials, including X-ray
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an indefinite employment contract within the framework of a Line of Research R&D line: Structured diffractive lenses https://www.upv.es/entidades/SRH/conypi/A1269812.pdf Where to apply Website https
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News https://cms.unimelb.edu.au/central-site-management/content-templates/news-listing/v4-assets-dynamic-loading/v4-list-parent-id-new?rootnode=5258462&template=block-listing&numAssets=12&readMore=false
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harmful microorganisms. You will actively work with the characterization of various materials using environmental electron microscopy, X-ray diffraction, AFM, and various spectroscopic methods such as NMR
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diffraction, and scanning electron microscopy, in the aim of the project “C2+toNH3 - Síntese eletroquímica sustentável de amoníaco via desidrogenação não oxidativa de biometano a etileno utilizando membranas
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characterization of C and SiC fibers - Training on bench use (in particular heating techniques by Joule effect, laser diffraction, infrared imaging, pyrometry, preparation of micrometric samples, ...) - Technical
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changes of photoreceptor proteins using time-resolved diffraction methods. A concrete goal will be to structurally characterize the structural effects of charge transfer (for example in cryptochrome and
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undergo comprehensive material characterization to assess layer quality through techniques such as high-resolution X-ray diffraction (HRXRD), X-ray photoelectron spectroscopy (XPS), ellipsometry, atomic
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to a deeper understanding of material behaviors, paving the way for the development of next-generation high-performance materials. For more details, please view https://www.ntu.edu.sg/mse/research and
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surface-emitting lasers with MHCG subwavelength diffraction grating mirrors): • Optimization by means of computer simulations of MHCG mirrors, • Finding the best strategies for efficient heat flow in