Explores techniques for filtering particles in microfluidics, including cross-flow filters and pinched flow fractionation, addressing challenges and alternative methods.
Explores the fundamentals of fluidics, covering Reynolds number, vortices, swimming, sedimentation, pressure drop, flow profiles, lift forces, and gas flows.
Explores fluid flow instabilities, including Rayleigh-Taylor and Kelvin-Helmholtz, and parallel flow concepts like normal mode decomposition and Squire's transformation.