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Simulation and Physics of Drosophila Larva Body Dynamics Introduction The “STRETCHED” project aims to develop a robust, physics-based 3D simulation platform to replicate the motor control dynamics
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led by Stefania Castagnetti (Mitosis and Spindle Control team), in collaboration with Evelyn Houliston (Developmental Mechanisms of Cnidarians team). Both teams are based at the Laboratoire de Biologie
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PhD student (M/F) in Polymer Chemistry: Synthesis of cross-linkable, degradable and recyclable latex
student will work on the synthesis of polymer monomers and colloids. The main applications will be degradable and chemically recyclable polymer films, as well as encapsulation for the controlled release of
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for data collection, statistical analyses, manuscript preparation, and presenting results at international conferences. Main tasks include: - Implementing controlled breeding experiments to assess
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. The doctoral candidate will play a central role in advancing the system from pulsed to continuous operation. The project is structured around two main objectives. First, the candidate will implement controlled
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(Au NR) networks. The catalysts can be "turned on/off" with a simple light stimulus. The key to this control lies in the polarization of light. By adjusting the polarization—either along the transverse
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control over momentum flux, partial premixing and swirl in all three channels, allowing for compact flame stabilization and low NOx emissions. The PhD candidate will explore a broad range of operating
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interact with them regularly. Therefore, a good command of the French language is essential. Where to apply Website https://emploi.cnrs.fr/Candidat/Offre/UMR5105-SANCLA-015/Candidater.aspx Requirements
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the friction processes along shear faults that appear to control ice shelf movements on a larger scale. At small scales, the number of available observations remains too low for a robust study. A new generation
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develop internally. At the end of the thesis, we expect to reach these objectives: (i) further understand and optimize the plasma processes to have a better control of the growth of UWBG semiconductors