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to monitoring scientific progress and defining short-term objectives. More informal discussions will also take place as needed, particularly during intensive phases of numerical development or data analysis
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well as a deeper understanding of how polymer chemistry and structure affect recycling efficiency. However, enzymatic recycling still faces numerous challenges at the interface of polymer physico-chemistry
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part of this project, the thesis will focus, on the one hand, on a detailed analysis of gas phase inhibition kinetics by combining experimental and numerical studies to determine global parameters (auto
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the FaSiRé project who will be working on geomorphological and seismotectonic analysis, as well as numerical modelling of the conditions of megalith and PBR falls. There will be numerous collaborations and
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and with the 2AT team at Institut Pprime to develop a shape-optimisation tool based on resolvent analysis, applied to landing-gear aeroacoustics The researcher will develop a numerical methodology based
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. The candidate must hold a PhD in mechanical engineering, aerospace engineering or a related field. The candidate must have a proven experience in numerical simulation in fluid mechanics and/or aeroacoustics, as
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study the transformation of initially spherical liquid droplets under the effect of radiation stresses, or “radiation pressure,” from ultrasonic waves (MHz) using both theoretical and numerical models
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and with the 2AT team at Institut Pprime to develop an innovative jet-noise prediction tool. The researcher will develop a novel jet-noise prediction tool based on a resolvent analysis of the Navier
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on numerical and theoretical aspects of turbulence, at INPHYNI and in other laboratories of Université Côte d'Azur. The PhD candidate should have a strong background in physics, with advanced knowledge of fluid
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approaches in the laboratory and numerous field and marine missions. The post is based at the LPG's Nantes site. This site is home to around 85 of the Unit's staff, out of a total of 130. The successful