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and numerical) to understand the emergence and maintenance of inversion polymorphisms. The work will focus on the following axes: • Modeling the genetic load: Quantifying how mutations accumulate within
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combined approach using numerical modeling and environmental metrology Key words: simulation, modeling, partial differential equations, hydraulics, inverse problem, sediment transport, peri-urban catchment
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transfer, and the fabrication and characterization of real components. Expected Skills 1. The candidate will have a strong background in numerical–physical modeling in the field of materials science. 2
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condensed matter physics • Ability to learn and develop skills in analytical computation, theoretical modelling and numerical simulations, in particular the numerical solution of partial differential
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program Metavers, this project aims at conducting a theoretical study by numerical simulation of an ensemble of electrophilic aromatic substitution reactions activated by superacids, which will also be
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this, the CHAIN-H2 project will combine experimental and numerical studies covering small-scale kinetics through to modelling of the larger-scale characteristics of flame inhibition (flame propagation in a cloud of
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well as a deeper understanding of how polymer chemistry and structure affect recycling efficiency. However, enzymatic recycling still faces numerous challenges at the interface of polymer physico-chemistry
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study the transformation of initially spherical liquid droplets under the effect of radiation stresses, or “radiation pressure,” from ultrasonic waves (MHz) using both theoretical and numerical models
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Jupiter's polar regions using computer simulations. The core of the project consists of coupling a photochemical model (developed and used in numerous planetary applications) with an electron transport model
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macro- scales at IJL, and to train machine learning models to predict the microstructure evolution at larger scales and longer times at SIMAP lab and Laboratoire Analyse et Modélisation pour la Biologie