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Field
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. This project aims to obtain high-resolution structures of the T4SS pilus by cryo-electron microscopy (cryo-EM), with a clear objective of rapidly generating structural data suitable for publication
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colloidal structures (aggregates, coacervates, soluble complexes, gels, etc.)1,2 depending on numerous parameters such as the chemical nature, molecular weight of the species involved, their relative
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proteins and nucleic acids and in particular RNA - preparation of in vitro cell-free translation extracts - purification of ribonucleic complexes suitable for structural studies by cryo electron microscopy
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utilise molecular backbones that have been little studied to date, based on weak interactions between electron-rich and electron-poor moieties in a chiral environment. The PhD student recruited will be
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, Microelectronics and Nanotechnology (UMR CNRS 8520 – https://www.iemn.fr/en/ ) is located in Villeneuve d'Ascq, near Lille, France. With a total staff of over 500, the institute has a broad research scope ranging
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materials with specific electronic and thermal properties, in conjunction with their structural characterisation, thereby enabling the exploration of their structure-property relationships. The laboratory
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compounds. Intermetallic catalysts stand out for their exceptional stability and diverse atomic and electronic structures. This versatility allows them to perform efficiently under harsh conditions, offering
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framework to model complex catalytic materials with near ab initio accuracy while enabling simulations at significantly larger spatial and temporal scales than conventional electronic structure methods
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on surface chemistry and catalysis, with a focus on understanding how halogenation (fluorine and chlorine) and thermal treatments can tailor the electronic and structural properties of NDs. The postdoc will
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pioneering method for obtaining the full conformational landscapes of biomolecular complexes at atomic scale from cryo electron microscopy (cryo-EM) images. It has been shown that MDSPACE analyzes