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models such as SFLAMS, WS18, XIAM and BELGI to fit the spectra. The candidate is expected to have interest in multidisciplinary work, and the capacity to work in an international environment. Excellent
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line culture, fluorescence microscopy) for the monitoring of the fate of nanoparticles in the biological environment. Secondary tasks: use and participate in the maintenance of a set of equipment for
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analysis of these records can provide vital information about how Earth's past environment changed over time. Current developments in clumped isotopic chemical analysis techniques should provide chemical
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them, evaluate their anti-oxidant activity in cellular models and animals (in collaboration), and to explore new means of delivery to biological environment in a therapeutic perspective. Requirements
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can provide vital information about how Earth's past environment changed over time. Current developments in clumped isotopic chemical analysis techniques should provide chemical information
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technologies developed at the ICMCB make it possible to: (i) recreate the conditions (p, T, mineralogy, etc.) encountered in natural environments; (ii) screen high-throughput reaction mixtures from the formation
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contamination of soils but also of water (highly monitored environmental compartments), with mixtures of parent molecules and their various degradation products. For example, a recent study showed that mixtures
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expected, and the credibility of the use of redox enzymes as effective biocatalysts on industrial scales is largely affected. This problem can be explained by a probable modification of the local environment
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. Proficiency in English, with excellent writing and presentation skills. Autonomy, rigor, and a team-oriented mindset. Willingness to work in diverse environments, including potential collaborative missions
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metallic and organic micropollutants. They are also capable of retaining elements that are highly mobile in other environments, such as iodine. However, this water filtration function can be affected by