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precision at very fine spatial scales, thereby revolutionizing the performance of future optical systems—especially for the direct detection of exoplanets. The methodology will combine advanced numerical
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and fabricating transparent and flexible microelectrode arrays (MEAs) based on conductive polymers for recording the electrical activity of enteric neuronal networks, as well as for performing cellular
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) system, a fully non-invasive neuroimaging technique; • Preprocessing and analyzing behavioral and neurophysiological data; • Performing statistical analyses of experimental results; • Participating in
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for geophysical flow modelling, uncertainty quantification, and high-performance computing. Its work relies on both deterministic and statistical approaches. The objective of this PhD project is to develop a new
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order to perform X-ray absorption spectroscopy measurements at the L3 and M4 edges of Pa. Due to the instability of Pa in a non-complexing medium at the concentrations required for the spectroscopic
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be responsible for developing this new instrument and demonstrating its performance on molecular systems ranging from organic molecules to proteins. Where to apply Website https://emploi.cnrs.fr/Offres
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through the EU Research Framework Programme? Horizon Europe – COFUND Is the Job related to staff position within a Research Infrastructure? No Offer Description Research activities will be performed in
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-performance computing projects (cosmological and galactic simulations, code development). The successful candidate will also benefit from the vibrant scientific community on the Paris-Saclay University campus
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approach. WP1 dealing with the elaboration, characterization and optimization of Cu/CeO2-TiO2 photocatalytic systems, will be mainly performed at IS2M (Mulhouse) and WP2 focused on the evaluation of gas
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of efficient redox catalysts which can retain activity under continuous operation is a key challenge for the development of stable water splitting schemes. However, most reactions involved in these systems