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tax monthly), with 75% of public transportation costs covered by the employer and 44 days of paid leave per year. Within the framework of the PEPR B-BEST program (https://www.pepr-bioproductions.fr
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, deformation mechanisms and mechanical performance, ultimately enabling more efficient design and optimization of advanced structural materials. [1] https://www.pepr-diadem.fr/projet/ammetis-2/ [2] https
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crystallization. Solvent-free reactive extrusion in line with methods following green chemistry principles will pe prioritized • Their structural characteristics will be examined using X-ray scattering (WAXS, SAXS
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contrôlé par des discontinuités localisées, i.e., des fractures ou fins chemins préférentiels, qui peuvent acheminer le fluide sur de grandes distances en des temps courts. Ces fines structures localisées se
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[3] or GaAs [4] suffer from major defects. Due to its indirect band gap, Ge has limited absorption efficiency. GaAs structures, on the other hand, have been produced on expensive III-V substrates
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nanocylinders (JNC), to use them to stabilize water-in-oil emulsions and to understand the relationships between the chemical structure of the polymeric building blocks, the characteristics of the resulting self
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will characterise the matrices produced by NMR in order to determine the impact of Se incorporation on the glass structure. It should be noted that we have considerable expertise in this field
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)materials: Self-Assembly of Peptides and Polymers (IRIS) team at the ICS. He/she will be depending from the ED222 doctoral school. For more information, please visit the website: https://www.ics
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Description The emphasis in biopolymer engineering has been on developing new materials with multiple and triggered on-demand functionalities through nano-structuration. This is driven by the need for diverse
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for its complexity and the rich physical phenomena it reveals. Coupling these nonlinear dynamics with a lattice structure, where light can tunnel between sites, enables the exploration of collective effects