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to enable convergence between the IPSL Earth System model and observations (natural and instrumental archives). · Evaluate the mechanisms of internal ocean-atmosphere coupled dynamics and feedbacks in
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electrochemical sensors for redox potential monitoring) to enable real-time monitoring of the microenvironment and tissue functionality; – the evaluation of the impact of flow-based culture conditions on organoid
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of genome-wide association studies (GWAS) to characterize the evolutionary history of genetic variants associated with complex diseases. • Evaluate, apply, and adapt methods for reconstructing genealogies and
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the use of advanced methodologies to evaluate nuclear size in our models of experimental evolution. This will then allow us to decipher how processes linked to this critical parameter, from modulation
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of these different assemblies. The ultimate goal is to further improve the evaluation of the effects of Coriolis acceleration and wavefront distortions by performing measurements at very low temperatures and with more
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the electronic response of each channel, to evaluate the jitter, the crosstalk and to determine the charge sharing ratio of the system (EICROC0+AC -LGAD) and the achievable spatial resolution by using a Beta
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to evaluate the basic magnetic properties of the materials, such as saturation magnetisation and Curie temperature. The materials will then be studied for their transient physical properties such as absorption