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complexes using X-ray crystallography and/or electron microscopy. In addition, the candidate will develop nucleosome reconstitution methods and genome-wide HSF-DNA binding assays. This project will be
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to propose an electronic wave packet that significantly increases the quantum yield of the photo-conversion reaction. - simulation of the quantum dynamics of the photochemical reaction induced
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focuses on the transfer of ionic and electronic charges at the interface of materials, which are the cause of many limitations and degradation processes in batteries. The goal is to characterize the state
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. - Experience in coding (python or other computer language). - Proven track record of publications in peer-reviewed journals. - English (written/oral) level of at least B2 (according to the common European
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academic references For inquiries about the position, please feel free to contact Vincent Le Fouest at the provided email address. Where to apply E-mail vincent.le_fouest@univ-lr.fr Requirements Research
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), fast electronics and microwave detection chains at the quantum limit. The samples are fabricated in the Institut Neel's clean room (Nanofab), offering state-of-the-art equipment (100 keV electron beam
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biostatistics, - At least 2 years of postdoctoral experience, and if possible experience in supervision (master or PhD students), - Solid background in mathematical modelling and computer programming
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the synthesis and growth of pure-phase single-crystalline inorganic halide perovskites (HPs) CsMX3 thin films, with M = (Pb,Sn) and X = (I,Br), for photovoltaic and opto-electronic applications. The underlying
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). • Advanced quantitative analyses (machine learning, computer vision, multilevel statistics). • Creation and use of Python code for advanced analyses. • Management and monitoring of complex transgenic lines
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found in these enzymes, as well as on trapped radical catalytic intermediates. To this end, various electron paramagnetic resonance (EPR) spectroscopy techniques will be employed (in continuous wave or