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, we develop kinetic models, but these models are reliable only for operating conditions quite close to the optimum production conditions and in isothermal conditions. By working at isothermal conditions
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and with the 2AT team at Institut Pprime to develop resolvent-based modelling tools for turbulent jets in cases where the jet mean flow is three-dimensional. The researcher shall: - Develop a high-order
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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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of Institut Pprime the CNRS is recruiting a Researcher within the framework of the SALSA project (funded by the DGAC and coordinated by Airbus). The successful candidate will contribute to the development and
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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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Cordeliers (CRC, Paris). The laboratory has a strong expertise in the development of ultrasound-based imaging modalities, such as pulse-echo ultrasound imaging and photoacoustic imaging. The project will
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The expert will participate in the necessary methodological developments and analyses of airborne data recorded by the IAGOS research infrastructure (https://www.iagos.org ) and from other networks, to provide
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(LIG), a 450-member laboratory with teaching faculty, full-time researchers, PhD students, administrative and technical staff. The mission of LIG is to contribute to the development of fundamental
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will ideally be developed as extensions of the ANEMOI library of the European Centre for Medium-Term Weather Forecasting. The person recruited will develop new regional weather forecasting methodologies
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'Catalysis for Energy Transition' (CATREN) and is led by Dorothée Laurenti and Laurent Piccolo. This thesis project focuses on the development of catalysts for the hydrogenation of CO/CO₂ into methanol, and