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candidate will join the SIGNAL team under the supervision of Dr. Yoan Coudert. Research topic : The recruited postdoc will investigate the genetic mechanisms underlying the pre-patterning and development at a
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bodies moving in a fluid or fluids being transported in ducts and pipes. There is significant pressure to reduce transport-related emissions, of which friction drag is a major constituent. On the other
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being transported in ducts and pipes. There is significant pressure to reduce transport-related emissions, of which friction drag is a major constituent. On the other hand, enhancing the turbulent fluxes
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des Platinoïdes dans l'Aval du Cycle) project, which aims to develop processes for recovering platinum elements (ruthenium, rhodium, palladium), molybdenum and technetium from spent nuclear fuel
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and sustainable technologies for the responsible exploitation of underground mineral resources. Main tasks • Design and develop new hydrophilic and lipophilic DES for selective metal extraction and
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topic of atmosphere-lithosphere interactions involving volatile elements in rocks, fluids and silicate melts under the exotic Pressure-Temperature-Composition parameter space covered by exoplanetary
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of solubility of (C-O-H-N-S-P) volatile elements in silicate magma in the exotic Pressure-Temperature-Composition parameter space covered by exoplanetary systems. A priority is given to the solubility of H2 in
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the development of a phase-field model to study the mechanisms of formation and growth of tetrataenite (Ni-Fe with the L1₀ ordered structure) during cooling. The objective is to incorporate the presence
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(H2 and CH4). - The development and use of HP/HT microfluidic and millifluidic setups for studying (bio)carbonation mechanisms - The characterization of effluents depending on the nature of the raw
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the variability of auditory sensitivity and to shed light on the mechanisms of adaptation to the soundscape. As part of this project, the main task of the researcher will be to detect and characterise the genomic