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partnership with the Charles Sadron Institute, - Contributing to the development of dedicated acquisition electronics, - Conducting tests on the developed devices, - Analyzing the obtained data, - Optimizing
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from ground or space. The work will consist of continuing to test and process data for inferring information on non-homogeneous aerosol model in the GRASP retrieval algorithm in order to improve
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of colonial marine vertebrates (albatrosses, penguins, sea lions) reproduce in simple, structured communities, we are testing key hypotheses concerning the processes affecting the eco-epidemiological dynamics
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methods to integrate transcriptional and cellular dynamics. Analyze large-scale transcriptomic and spatial dynamics datasets. Work in close collaboration with the team's biologists to test predictions from
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at the LNCMI-T. Together with other team members, he/she will design the experimental setup, oversee its fabrication, assembly and testing, before conducting his/her own chiral EPR spectroscopy projects
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alignment, assembly control and synchronization of components - characterization of the setup performances - preparation of test and biological samples, data acquisition, data analysis - communication (with
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selected candidate will investigate how aerosols influence cirrus clouds from regional to hemispheric scales. The work will involve implementing and testing different ice nucleation schemes in regional
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Microscope (SEM). - Perform simulations of tensile tests and nanoindentation in materials produced via Laser Powder Bed Fusion additive manufacturing. - Compare the resulting dislocation microstructures with
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the Cretaceous, evaluate the duration and intensity of thermal anomalies related to crustal thinning, and test the existence of a post-rift cooling phase. Gravity and magnetic modeling will constrain
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contribute to various aspects: - setting up the optical implementations of new concepts - testing and validation of new experimental set-ups - pilot/simulation programming - characterisation of various samples