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functional materials. Research activities focus on controlled polymer synthesis, macromolecular engineering, polymer self-assembly, nanoparticle design, and the development of stimuli-responsive polymer
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Master's degree in Materials Science and/or Computational Methods in Mechanical Engineering (or a closely related field). The successful candidate should demonstrate a strong background in numerical methods
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materials. This PhD project is part of an original research-creation initiative combining engineering, life sciences and design. Its objective is to develop innovative experimental models to investigate
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activate spinal networks. This PhD project aims to investigate the underlying mechanisms of rSynES-induced recovery using a mouse model of cervical SCI, through longitudinal assessment of molecular and
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– Atmosphere” (TOSCA) domain of the CNES. Since 2011, the GET has also been an affiliated unit and a component of the Carnot Institute ISIFoR (Sustainable Engineering of Georesources). This project aims
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engineering of controlled cellular microenvironments. The PhD will be conducted in a highly interdisciplinary environment at the interface of soft matter science, biomaterials engineering, microfabrication
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liquid solvent film to control growth, offers an innovative approach to overcoming these challenges. This PhD thesis aims to understand the fundamental mechanisms of 3C-SiC growth via TSM by studying
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transport. Qualification. Required: Degree in geosciences, physics, chemistry, engineering or fluid mechanics. Interest in fabrication techniques, experimental development, and multidisciplinary work
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letter outlining the candidate's motivation; academic transcripts from the first and/or second year of the Master's programme, or from an engineering school. Website for additional job details https
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Joint Research Unit (UMR 7345) overseen by Aix-Marseille University and the CNRS (primarily affiliated with the CNRS Engineering and CNRS Physics institutes, and secondarily with the CNRS Chemistry and