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both 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
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:this project pioneers a new paradigm of General Genome Interpretation (GenGI) models by combining DNA Large Language Models (DLLMs) with Deep Neural Networks to predict human phenotypes directly from Whole Exome
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performing atomistic simulations with Density Functional Theory and Molecular Dynamics. Data analysis and coarse graining in order to provide parametrisations for upper scale models (Kinetic Monte Carlo and
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version of the ORCHIDEE continental surface model. · Evaluate vegetation responses and feedbacks to climate and greenhouse gas forcings for future and past climates. · Support the integration of vegetation
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combine density functional theory (DFT), molecular simulations, and machine-learning force field (ML-FF) development to uncover the factors controlling NHC–surface interactions and to model realistic
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Postdoctoral researcher (M/F). Modeling damage during earthquakes. Comparison with geophysical data.
generated during earthquakes. The work will be based on the joint study of micromechanical damage models and their comparison with seismological and geodetic data published as part of this same ANR project
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funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description The main objective of the project is to develop an instrument model to predict
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project aims to develop and apply computational protocols to model the properties of the HFIP solvent and to investigate their influence on chemical reactivity. Develop and apply computational protocols
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subsidiarity at the territorial scale," specifically through the "materials for energy storage" program. Using molecular modeling tools, the objective is to participate in the design of a single catalyst capable
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selectivity and permeability and ultrahigh water permeability combined with high salt rejection. The objective of this work is to construct atomistic models of MOFs/Polymers and Artificial Water-Channel