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Titlebook: Complex Fluid-Flows in Microfluidics; Francisco José Galindo-Rosales Book 2018 Springer International Publishing AG 2018 Complex fluids.Gr

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https://doi.org/10.1007/978-981-97-3027-8le. At such reduced length scales, phenomena involving viscous forces, reactive flows and surface effects (electrokinetics, slip flows, capillarity, surface tension) may become more important, and eventually overcame the effects of other macro scale predominant forces, such as inertial or gravitatio
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https://doi.org/10.1007/978-3-319-59593-1Complex fluids; Granular Matter; Complex flows; Microfluidic devices; Fluid-flow characterization techni
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978-3-319-86658-1Springer International Publishing AG 2018
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https://doi.org/10.1007/978-3-031-21808-8Microfluidic technology usually, but not exclusively, aims at the miniaturization of conventional laboratorial processes to handle fluids (liquids and/or gases) within submillimeter ranges.
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Microfabrication Techniques for Microfluidic Devices,Microfluidic technology usually, but not exclusively, aims at the miniaturization of conventional laboratorial processes to handle fluids (liquids and/or gases) within submillimeter ranges.
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Numerical Optimization in Microfluidics,Numerical modelling can illuminate the working mechanism and limitations of microfluidic devices. Such insights are useful in their own right, but one can take advantage of numerical modelling in a systematic way using numerical optimization. In this chapter we will discuss when and how numerical optimization is best used.
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