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uncertainties (delays, resources, failures) using various methods, including Bayesian approaches. 3. Optimize the workshop configuration, taking into account scenario variability, by relying on the surrogate
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; - Characterizing blister dimensions using AFM and SEM, as well as the strain transferred to 2D materials using spectroscopy (Raman); - Implementing analytical and numerical (finite-element) approaches to analyze
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investigated. These interface models and characteristics will then be transferred to other researchers for larger-scale modelling (molecular dynamics, finite element modelling of the battery…). The post-doc
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expertise in finite element simulation and poro-elastic media modeling. Skills in identification, biomechanics, and homogenization are a plus. Website for additional job details https://emploi.cnrs.fr/Offres
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communications. The team specializes in multi-sensor methods, tensor decompositions and component analysis for the joint processing of multimodal data, notably in the context of invasive (intracardiac electrograms
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physics, structured around three main axes: Novel electronic states of matter (correlated systems, unconventional superconductivity, magnetism, metal-insulator transitions, etc.) Reduced-dimensionality
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department at IETR in inkjet-printed OTFT fabrication and is part of the ANR-funded SMOOTH (Stable Metal-free Organic transistOrs Thanks to Homojunction) project, which will start in February 2025 and run
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on other taxa (microorganisms, birds, fish), notably through the FREE project. The project includes a strong synthesis component, with opportunities for empirical extensions depending
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supervision of Antoine Guichet, as part of the Polarity and Morphogenesis team, headed by Antoine Guichet at the Institut Jacques Monod. Microtubules are a central component of the cytoskeleton and play a key
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to do a proof of concept by first implementing the gravity anomaly using a boundary element method for homogeneous media (Cayol et al., 1997), before switching to a fictitious domain method for