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PhD position: Nanoengineering refractory compositionally complex alloys for extreme conditions (M/F)
microscopy (SEM) experiments will be used to identify deformation mechanisms and establish structure–property relationships. At the University of Arizona (U of A), state-of-the-art nanoscale characterization
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structure lead to a temporal evolution of the network. The proposed co-supervision is uniquely positioned to enable the PhD student to tackle these challenges. N.C. has developed a unique computerised system
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for cryo-electron microscopy (cryo-EM) data analysis, modeling conformational heterogeneity, and identifying optimal binding candidates, by integrating image analysis and docking across multiple structural
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topic: This position falls within the field of bioenergetics and protein biochemistry. The project aims to study the role of an original extra-membrane structural module involved in the mechanism
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, this research project will initially involve creating a library of MOFs exhibiting the widest possible range of physicochemical and structural properties. A synthesis robot will then be used to design
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of going from their culture to the structural description of their native metalloenzymes. For this purpose, the freshly built laboratory is equipped with five anaerobic glove boxes containing state
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of objects, but current techniques are limited to small particles (micrometer to millimeter scale). In optics, the slowing down of light ("slow light") in structured media significantly amplifies radiation
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is organized through doctoral schools. In Montpellier and Nîmes, the CBS2 Doctoral School is the leading structure for PhD studies in health and biological sciences. CBS2 supports PhD research across
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in the first step of the reaction. The objective here is to characterise the structure and physico-chemical properties of these intermediates, especially their local electrophilicity and their NMR
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to the inhomogeneous morphology of electrodeposited Li metal during battery operation. In liquid based systems, micron sized Li dendritic structures form, react with the electrolyte and passivate leading to capacity