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evaluated to determine whether they provide additional haemodynamic information beyond conventional Doppler methods. To provide mechanistic insight into the experimental findings, computational fluid dynamics
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–liquid relative permeability, fluid saturations, and multiphase transport properties in shale samples. Capillary Pressure & Saturation: Develop and implement innovative experimental and analytical
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We are looking for a researcher, whose expertise lies in computational fluid mechanics and finite element methods, to work with Matthew Hubbard and Reuben O’Dea on a Wellcome Trust funded project
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degree in mechanical/aerospace/civil engineering with strong expertise in experimental and computational fluid dynamics. The candidate must have experiences in coding, designing and developing flow
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Postdoctoral Research Fellow: Computational Methods for Fluid-Granular Flows Job No.: 690226 Location: Clayton campus Employment Type: Full-time Duration: 3-year fixed-term appointment Remuneration
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Johns Hopkins Medicine - Laboratory of Human Biomimetics | Saint Petersburg, Florida | United States | about 1 month ago
their expertise to emerging human experimental models. Bioengineering and Platform Technology We seek an engineer to develop technologies for operating, controlling, manufacturing, and scaling human
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• Conduct computational fluid dynamics (CFD) simulations • Conduct experiments in wind tunnels and water channels • Analyze experimental and simulation data and summarize key findings and
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University of North Carolina at Charlotte | Charlotte, North Carolina | United States | about 20 hours ago
environmental systems, heat transfer, fluid flow, thermal systems, or building-energy performance. • Low-carbon materials, concrete, biomaterials, or material characterization. • Sensors, environmental monitoring
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Center for Drug Evaluation and Research (CDER) | Silver Spring, Maryland | United States | about 5 hours ago
will receive training and participate in the design, conduct, optimization, and interpretation of in vitro studies using human-relevant respiratory epithelial models. Experimental activities may include
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individuals participating in studies investigating the cardiovascular consequences of preterm birth. By combining fluid dynamics, machine learning, and advanced imaging analysis, the project seeks to develop