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Field
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Skills: Microfluidics: Strong theoretical and practical understanding of fluid dynamics, fluidic circuit design, and numerical simulation (e.g., COMSOL Multiphysics or ANSYS) and experience in designing
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simulation of reactive fluids, computational fluid dynamics) We particularly encourage applications from candidates with a computational background. What we offer Cutting-edge research in a dynamic work
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background in Computational Fluid Dynamics, should be familiar with High Performing Computing, including coding in CUDA, and should have knowledge of C++, Julia and Python; d) Ability to work both
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PhD researchers working on related reactive fluids and energy topics. You will work in a multicultural environment where knowledge is shared openly, and you will be supported through mentorship and
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at the micrometre scale that can propel themselves through fluids, mimicking natural swimming organisms such as bacteria forms. Using biological building blocks found in cells and encapsulating them inside vesicles
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model of high-pressure mechanical seals. Apply Computational Fluid Dynamics (CFD): Simulate gas film flow within the microscopic seal gap. Couple CFD with Structural Models: Study the fluid-structure
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Inria, the French national research institute for the digital sciences | Toulouse, Midi Pyrenees | France | 10 days ago
programming skills in Python or C/C++. The candidate should also be familiar with the domain of computational fluid mechanics. Experience in meshing methods is appreciated but not required. Good communication
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applicant must have (or be close to obtaining) a relevant PhD in Fluid Mechanics from an Engineering, Mathematics or Physics Department, a strong background in theoretical and computational fluid mechanics
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-The objectives of the thesis are: --------------------------------------------- - To understand fluid flows through inter-shaft seals - To quantify leakages at the piston ring/bore and piston ring/rotor interfaces
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the Val'actif group, whose research spans from the eco-extraction of molecules of interest (notably through processes involving supercritical or pressurized fluids) to the study of their biological properties via