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that has not previously been described in the scientific literature. The successful candidate will play a leading role in the project’s experimental programme, developing and carrying out laboratory
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-probes, - developing bio-detection methods for biomarkers in fluids, based on the use of bio-receptors (antibodies, DNA probes, etc.) and fluorescence spectroscopy, - improving the biodetection performance
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: Modelling of high-power vortex induced turbulence in free-space and fluid dynamic based optical propagation modelling working with Professor Martin Lavery. HiPOVor aim is to train 15 ESRs to be the first
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: 283928469 Department PPPL Engineering Category Engineering Job Type Full-Time Overview Provide technical expertise and managerial leadership for all systems assigned to the Fluid Systems Group (Cooling Water
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design, computational fluid dynamic modelling, and assessment of thermo-fluid systems for aviation, focusing on icing in aircraft fuel systems. About You You will be educated to doctoral level in a
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to generate meshes for hemodynamic simulations of flow in the left atrium. Simulation of reference cases for validation of advanced medical imaging–based flow estimation techniques. Development of fluid–electro
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fluid. The developments will be applied to various case studies such as supercritical CO₂ Brayton cycles, refrigeration cycles, and heat pumps. Where to apply Website https://emploi.cnrs.fr/Offres
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– "Fluid gap Electro-Active-Polymer Machines for a New Generation of Mechatronic Systems." The selected candidate will contribute to the development of experimental and theoretical activities aimed
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, cleans ultrasonic units as needed. Prepares clinical kits for students. Cleans up all discharged bodily fluid immediately. Prepares unit for provider and patient. Sets and drapes the patient to prepare for
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leaks and evaluating methods for optimizing CO₂ transport. The tasks will include developing and implementing computational algorithms for modeling CO₂ transport processes in pipelines, performing