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Explores forces and compartments in computational cell biology, emphasizing the significance of indirect forces mediated by the environment and the role of compartments in cellular functions.
Explores molecular structures, including nucleotides, polymers, and lipid formations, emphasizing the importance of secondary structures in biological functions.
Explores the principles and applications of dielectrophoresis, covering topics such as DEP sorting, trapping devices, and live/dead cell differentiation.
Covers the fundamentals and applications of coarse-grained simulations, including advantages, challenges, single-scale simulations, brain modeling techniques, and lipid membrane coarse-graining.