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Field
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Postdoctoral Fellowship in Meteorology- Numerical Simulation Studies of Tornadoes University of Oklahoma Norman Campus: Atmospheric and Geographic Sciences: School of Meteorology Location School
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simulation purposes and perform simulations to understand flash-back dynamics as well as study noise and pollutants emissions for stable operation of the burner; e) Use high-resolution experimental data
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generalization across tasks. Hierarchical and modular agent architectures to enable scalable coordination. Design and implement simulation environments, integrating real-world data and domain-specific constraints
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the system Development of inverse design frameworks using machine learning Development of full simulation for the chip-scale chirped-pulse amplification Use the full simulation to guide system fabrication
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planning, spacecraft rendezvous, docking, and proximity operations. Utilize physics-based robotic simulation tools (e.g., Gazebo, Matlab/Simscope) and space mission analysis software (e.g., GMAT, STK
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or resonant structures, and incorporate them into printed designs. Simulate and optimize acoustic wave propagation, structural resonances, and device performance using FEM tools (e.g., COMSOL Multiphysics
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. However, most studies to date have focused on symmetric bilayers. This project addresses this gap by integrating molecular dynamics simulations with experimental techniques such as solid-state NMR
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, cytosol). This project will use coarse-grained molecular simulations, complemented by in-house experimental validation, to gain molecular insights in the controlled system assembly and disassembly. Our goal
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including key components such as cell configurations, flow channels, electrodes, membranes, and catalysts for HER and other electrochemical processes. • Conduct CFD and electrochemical simulations
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development of next-generation computational tools for simulating particle-laden two-phase flows by integrating advanced Artificial Intelligence (AI) techniques with traditional computational fluid dynamics