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Field
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. Advanced data interpretation using electron diffraction, dendritic growth modeling, and REE behavior in Fe-rich matrices. Competences & Personal Qualities Excellent English communication skills (oral and
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synthesised in situ using a state-of-the-art pulsed laser deposition system. Key characterisations include X-ray diffraction for structural properties and temperature-dependent magneto-optical properties
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demonstrate the interweaving of humans and other species, animate and inanimate objects and technologies. Through these examples, the project experiments with methods (Research through Design, diffractive
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demonstrate the interweaving of humans and other species, animate and inanimate objects and technologies. Through these examples, the project experiments with methods (Research through Design, diffractive
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Your Job: Mixed-valence vanadium oxides express a variety of divergent magnetic, electronic and catalytic properties that make them attractive for numerous applications thanks in large part to
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Structural characterizations: X-ray and electron diffraction, electron microscopy, atomic force microscopy Study of electronic and magnetic properties: SQUID magnetometry, X-ray and angle-resolved
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information about the main supervisor of the project, please see: https://www.sljus.lu.se/pablo-villanueva-perez Work duties MAX IV is the first operational diffraction-limited storage ring in the world
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methods, including transmission electron microscopy (TEM), scanning electron microscopy (SEM), atomic force microscopy (AFM), Raman spectroscopy, and X-ray diffraction (XRD), is essential for study of
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on hydrometallurgy for resource-efficient processes. Hydrometallurgy is a set of chemical engineering methods in which materials or waste streams – from mining waste to electronic waste – are processed to make
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crystalline materials with interesting magnetic and electronic ground states. Here, a special focus lies on crystal growth through chemical transport reactions and flux methods as well as X-ray diffraction