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) describing shell dissolution, from the individual scale to the sediment. • Systematically compare simulations and experimental data to calibrate dissolution kinetics and improve prediction accuracy
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muscle contraction patterns during facial expressions and mimetic movements, which will subsequently be used for simulation and evaluation of the results. The PhD project is divided into five following
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representation of the vertical coordinate in numerical ocean models used to simulate ocean currents, temperature, and salinity. These developments will improve the representation of deep-ocean circulation and
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their understanding, validation, and integration into distributed or embedded architectures. Finally, the developed approaches must be experimentally validated on real-time and HIL/PHIL simulation platforms
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of investigating the relationships between microstructure, processing routes, and thermomechanical performance. The research will combine physics-based modelling and numerical simulations, including thermomechanical
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parameters (periodicity, thickness, refractive indices) and material properties to maximize the ultrasonic sensitivity of the sensor. 3. Experimental Validation: Comparison of the predicted simulation
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. Consequently, the candidate must demonstrate skills and a strong interest in these two disciplines. Additionally, the candidate must show an aptitude for data processing and numerical simulation. Proficiency in
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are essential. Experience with finite element simulation software will also be considered an asset. Where to apply Website https://emploi.cnrs.fr/Offres/Doctorant/UMR7315-DAMAND-007/Default.aspx Requirements
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per month. Affiliation with the SDU2E doctoral school. Application should include a CV, motivation letter, complete course grade, contact information of two references, and a copy of the Master's thesis
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association with the ITER project; • Astrochemistry and exobiology, to simulate various environments and to prepare for future space missions and observations; • Surface sciences and innovative materials