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practical skills in numerical modelling. Website for additional job details https://emploi.cnrs.fr/Offres/CDD/UMR5510-PETGRI-001/Default.aspx Work Location(s) Number of offers available1Company
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into polymer matrices. - Use of luminescent species for applications such as sensors. - Knowledge of DFT‑type simulation methods for modeling molecular properties. - Experience writing scientific articles and
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on comprehensive rheological characterisation, including the determination of viscoelastic properties through appropriate testing and modelling; Support in polymer characterisation using techniques such as (not
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by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description Determine the conditions for wrinkle formation during the drying of polymer solutions and
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-Doctoral fellows, 40 PhD students, and 52 Executive Master students. The department is organized in 4 Scientific Areas: Energy (batteries and hydrogen), Polymers and Composite Materials, Surface Science, and
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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
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is to validate original theoretical models of contact mechanics that take into account the effects of surface tension, adhesion, and viscoelasticity on nanoindentation measurements. These measurements
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understanding of WS/DP adsorption to solid–water interfaces, including soils, sediments, sludge, and model mineral/organic surfaces. Experimental studies will investigate polymer–surface interactions, adsorption
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Basque Center for Macromolecular Design and Engineering POLYMAT Fundazioa | Spain | about 1 month ago
the production of polymer latexes that involves a complex, heterogeneous polymerization system and leads to polymers with a diverse range of structures. This project looks to use machine learning to better target
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polymer composites. This project is a direct, high-impact follow-on from our published work on Composite Fibre Additive Manufacturing (CFAM), a novel sheet lamination technique. The initial research