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Explores numerical flow simulation methodology, physical problems of Maglev vehicles, Vactrain, and Hyperloop concepts, along with simulation goals and challenges.
Delves into simulation games, replicating real-life scenarios in a risk-free and enjoyable manner, covering various types and the balance between realism and playfulness in game development.
Emphasizes the impact of boundary conditions on solution convergence in numerical flow simulation and discusses the choice between pressure-based and density-based solvers.
Covers the fundamentals and applications of coarse-grained simulations, including advantages, challenges, single-scale simulations, brain modeling techniques, and lipid membrane coarse-graining.
Covers free meshing algorithms, partitioning, and incompatible meshes in 3D simulations, emphasizing the importance of mesh quality and element compatibility.
Covers theory and practical applications of protein folding simulations using molecular dynamics, focusing on solvent effects and analysis of folding dynamics.