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collection of >6,000 isolates of the fungus present in the lab (and 20+ closely related species). Additionnally to computer analyses (which will represent the core of the project), the PhD student will
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, their manipulation with magnetic and electric fields, and the generation of spin and orbital electronic currents for spin–orbit torques in solid-state devices made of light metals, metallic ferromagnets and/or
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and cosmology, with a strong technological focus on electronics, mechanics, instrumentation and computing, enabling the design and construction of cutting-edge detection systems, often called upon
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electronic properties of two-dimensional (2D) semiconductor materials, making them particularly attractive for applications such as catalysis and micro/nanoelectronics, for instance for the development
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presentation techniques - English language: B2 - Russian language: B2 - Ukrainian language: C1 - Ability to develop data collection tools (questionnaires, interviews, case studies, field observations, monographs
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: electronic structure calculations (plane wave DFT if possible), statistical thermodynamics, molecular dynamics. Skills in Python, bash scripting, Fortran 90 and machine-learning would be appreciated. The PIIM
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slices, dissociated cultures), preparation of vectors for the expression of fluorescent markers, fluorescence imaging and cryo-electron microscopy, analysis and formatting of experimental data, manuscript
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project in the doctoral network, indicating their order of preference of projects to the supervisors. The application documents, combined in a single PDF file, should be sent by email to the relevant
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rare-earth-doped fluoride glasses. Indeed, recent advances made in the fabrication of high-purity fluoride glass fibers show that this technology is very appealing for the development powerful and
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PhD on 2D quantum photonics : towards neuromorphic applications with 2D ferroelectrics materials M/F
of the European-funded 2DFERROPLEX consortium, bringing together leading experts in the field. Research Focus By simply sliding one 2D crystal atop another, the electronic properties of the resulting