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areas to work on an ERC-funded proof-of-concept project. The goal is to develop a miniature, quantitative greenhouse gas analyzer based on our successful fiber Fabry-Perot microcavity technology. The
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-based gas-mixtures. The aim is to measure the selectivity and fraction recovered of hydrogen-based and carbon-based gas mixtures. The project will be in collaboration with Horiba S.A. The recruited
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MBE cluster for topological materials, consisting of a chamber for high purity III-V materials (As, Al, Ga, In, Sb, Bi, …) coupled to a second superconducting/ferromagnetic metal chamber (Al, Nb, … / Fe
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membrane processes (effluent treatment, gas separation, biotechnologies related to food science and health….). Since its inception in 2010, Polymerization-Induced Self-Assembly (PISA) has revolutionized
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Reactivity (RA) group deal mainly with laboratory and field studies of the gas phase and heterogeneous chemical processes of interest in the troposphere. RA is also associated with the Observatoire des
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for this shift remain unclear. Among all the different palaeo records, only ice cores allow for a direct measurement of greenhouse gas concentration, thus providing a direct and quantitative information about past
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modules for modelling two-phase gas-water flows using a pore network approach developed in the iMorph software. He/she will also be responsible for developing new modules for simulating sorption phenomena
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in 2020. The laboratory's research themes are nuclear physics, high-energy physics, astroparticles and cosmology, theoretical physics, particle gas pedals and detectors, as well as technical research
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hexafluoride, a greenhouse gas, for the synthesis of high-value-added products. The purpose of this project is to synthesize a reagent capable of transferring the SF5 group via the activation of SF6
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, - Experimental studies of the solar reactor at the focus of a solar concentrator at Odeillo, - Determination of performances, mass and energy balances, gas analysis and solid products characterization, - Data