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determine the crystal structures and compositions of new (meta)stable open-structured silicides under HP-HT conditions as well as their P-T stability or synthesis domains. - Main task 1: the candidate will be
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scientific activities related to data production and structuration, carried out by project partners in the humanities and social sciences, particularly in heritage science, across various corpora and case
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• Participation in micro- and nanofabrication processes using CRHEA's state-of-the-art cleanroom facilities (advanced lithography and etching techniques) • Optical and structural characterization of fabricated
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experimental validation of mathematical and computational models linking individual microscopic dynamics, information propagation, and collective structures (norms, social networks, global performance
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, physical chemistry, photophysics and biology, and seeks to simultaneously extract structural, dynamical and environmental information at the single-molecule scale. Within the framework of this position
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The postdoc will realize an EPR analysis on DNA-based enzymes, using 1D and 2D techniques. Two main systems will be investigated, having Copper(II) and Manganese(II) as metal co-factor. Structural and
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the first objective is to extend these findings to silicon solar cells. Two emerging concepts will be investigated and compared: (1) Multi-resonant absorption induced by perfectly ordered structures
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into key intermediates such as FDCA and DFF. And to a lesser extent to: • The development of hybrid photo–bio catalytic systems • The study of structure–activity relationships and system integration
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charge/discharge cycles. The aim is to provide a unique tool to better understand the structure and evolution of interfaces/interphases in batteries, and thus, guide the design of more efficient and
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funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description Study the structural, electronic and optical properties of defects (point or stack