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breakwaters under varied sea conditions. 2. CFD and Finite Element Modeling Perform Computational Fluid Dynamics (CFD) simulations to optimize the design and performance of floating breakwaters. Develop finite
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, with a specific focus on complex biological systems. The project aims to apply highly controlled optical trapping techniques to investigate cell–fluid interactions during macropinocytosis (“cell drinking
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to optimize fluid flow, heat transfer, and current distribution within the electrolyzer. • Model key parameters such as overpotential, gas diffusion, ion transport, and pressure drop to improve overall
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, many-body physics, quantum information, quantum fluids, or cold atoms. Proficiency in numerical simulations is essential. The appointee will join CQT under the supervision of a group of researchers
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Vancouver, Canada. The position is available starting August 2025 for at least 1 year. The research project will focus on the extraction of bodily fluids for off-device analysis. Applicants must hold a Ph.D
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and data-poor settings. Key research areas include stress prediction, reservoir deformation, fault reactivation, and the interaction between injected fluids, and rock properties. This project offers
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equipment • Conduct wind tunnel/water experiments • Conduct computational fluid dynamics (CFD) simulations • Analyze experimental and simulation data and summarize key findings and observations
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. The key responsibilities of this position include: Perform numerical simulation to solve fluid-solid-interaction problems Perform design optimization, especially AI-based generative design Master domain
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required for a series of studies on the glymphatic system - examining the combined effects of genetic, clinical, fluid, and imaging biomarkers on the clinical phenotype in patients with Parkinson’s disease
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equipment • Conduct wind tunnel/water experiments • Conduct computational fluid dynamics (CFD) simulations • Analyze experimental and simulation data and summarize key findings and observations