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spectrum of topics in CNU sections 27 "Computer Science" and 61 "Computer Engineering, Automation and Signal Processing". The laboratory is located at the heart of the Sophia Antipolis technology park, in a
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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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between pollution control efficiency, electrochemical yield, and energy recovery potential; • Develop coupled electrochemical and hydrodynamic models to predict process behavior; • Participate in
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joint research unit (UMR CNRS 7315) operated by the CNRS and the University of Limoges. Affiliated with the CNRS Institute of Chemistry (INC), IRCER conducts research on the understanding and control
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films with controlled thicknesses (from a few atomic layers to a few hundred nanometers) and morphologies—where the few-atomic-layer regime is particularly relevant to borophene-related structures and
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components of Jupiter's radio emissions • Determining the extent to which the solar wind controls the activation of radio emissions. • Development of an index linking the solar wind to Jupiter's radio
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computer, virtual data storage, and access to software tools for specialized data analysis (e.g., Cryo-EM data, crystallography, etc.). Structural microbiology: Exopolysaccharide secretion and host
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an exceptional know-how and experimental methodology, in a high-level scientific environment. The context of frequency metrology requires to master and control the noise sources of the experimental setup as
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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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, including controlled surface modification with attoL precision, demonstration of pipette modification in the microscale, and preliminary demonstration pH dependent emission. We are looking for a motivated M2