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, spectroscopic and microstructural techniques, to investigate mass transport of chloride and other key constituents of the cemented matrix containing Magnox metal, improving understanding of key parameters
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valorisation, degradation kinetics & durability, mineralogical phase characterisation of materials, lab-based testing on electrochemical techniques, microstructure performance evaluation and computational
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, energy, transportation, and construction. The laboratory focuses on describing the relationships between processing, microstructure, and properties, using both experimental and modeling/simulation
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: https//phelma.grenoble-inp.fr/ Contacts : ronald.phlypo@grenoble-inp.fr School presentation : Grenoble INP Phelma is an engineering school of the Grenoble Polytechnic Institute. It offers its students a
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thermometry often lacks the resolution and responsiveness required to detect transient thermal heterogeneities, especially in complex environments like soft matter, microstructured systems, or biological
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microstructure and mechanical properties and correlate these with the process route. You will conduct modelling investigation and validation of the performance (wear, resistance to fatigue cracking) under working
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on structural battery electrolytes, including: synthesis of polymer electrolytes and multifunctional materials, electrochemical characterisation of battery systems, microscopy and microstructure analysis
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IM2NP (Institut Matériaux Microélectronique Nanosciences de Provence) UMR CNRS 7334 Aix Marseille Université | Marseille, Provence Alpes Cote d Azur | France | 10 days ago
solidification seront menées dans un dispositif unique appelé GaTSBI (Growth at high Temperature observed by X-ray Synchrotron Beam Imaging) développé par l'équipe MCA (Microstructures de Croissance Auto
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wave attenuation for discriminating microstructural effects of thermal damage from moisture conditions in concrete, NDT & E International, 156, 2025. https://doi.org/10.1016/j.ndteint.2025.103473 [2] Y
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investigates how microstructural design in polycrystalline functional oxides, such as grain size, crystallographic orientation, and strain, can be used to enhance and control the caloric cooling performance