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public. The postdoc researcher will be integrated in the "Thermodynamics and biophysics of small systems" team (16 members, including permanent and non-permanent staff) of the Condensed Matter – Low
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collaboration with Michelin, is to develop surrogate models capable of rapidly approximating the simulator's results while accounting for uncertainty. Particular attention will be paid to the model's lightness
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composition and atomistic modeling of materials. The main activities will include: - formulating new descriptors of critical temperature (Tc) incorporating electronic fluctuation effects, evaluated by
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natural and highly polluted conditions, and how these processes can be represented in models to theoretically assess the potential of cirrus cloud thinning as a climate intervention strategy. The selected
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natural and highly polluted conditions, and how these processes can be represented in models to theoretically assess the potential of cirrus cloud thinning as a climate intervention strategy. The selected
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Joaquín RODRIGUES JACINTO (I2M Aix-Marseille Université), the research program "p-adic Kudla program and p-adic automorphic forms". The Postdoc will be responsible for supporting and coordinating
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of Research Experience1 - 4 Research FieldEnvironmental scienceYears of Research Experience1 - 4 Additional Information Eligibility criteria - modeling of demographic dynamics in ecological communities
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combines multimodal neuroimaging with computational modeling to characterize the neural mechanisms underlying human social decision making. The focus of this project will be to unravel the neurocomputational
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, particularly using reconstructed human skin models that mimic aging or wound-healing conditions. This work takes place in a multidisciplinary framework combining chemistry, biophysics, and tissue engineering
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networks, to name but a few. The development of these systems requires realistic modeling of these propagation channels. The main difficulty lies in measuring this multi-dimensional propagation channel (time