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Wednesday, January 29, 2020

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Basic Microfluidic Concepts ~ One of the long term goals in the field of microfluidics is to create integrated portable clinical diagnostic devices for home and bedside use thereby eliminating time consuming laboratory analysis procedures Basic Principles of Microfluidics The flow of a fluid through a microfluidic channel can be characterized by the Reynolds number defined as

Principles of Microfluidics Viktor Shkolnikov ~ Format PaperbackVerified Purchase This is a solid foundation for microfluidics engineers It widely covers all aspects from the fundamentals to exotic phenomena all treated in mathematical detail with full differential equations solutions and practical comments

Microfluidic Principles Part 1 University of Minnesota ~ Microfluidic Flow Challenges Flows at low Reynolds numbers pose a challenge for mixing Two or more streams flowing in contact with each other will mix only by diffusion As surface area to volume increases surface tension forces become significant leading to nonlinear freeboundary problems As suspended particle sizes approach the size

Microfluidics From Basic Principles to Applications ~ Microfluidics is the science and technology of systems that process or manipulate small amounts of fluids using channels with dimensions of one to hundreds of micrometers This field is mainly driven by technological applications where the aim is to develop entire laboratories inside chips

Microfluidic Principles Part 2 ~ Steven S Saliterman Electrokinetic Phenomena Electroosmosis Fluid movement relative to a stationary charged or conducting surface through application of an electric field Electrophoresis In the presence of an electric field the particle can be induced to move relative to a stationary gel or moving liquid Streaming potential

Microfluidic Design Principles ~ 22 November 2010 Intro to Microfluidics 15 Deriving further Assumptions • No local acceleration • Constant density • Incompressible Newtonian fluid • Velocity components only in direction of bulk flow 2 1 2 dz d v dx dp x ρ μ Fluid velocity profile in an infinitely wide channel z x h L v x P 1 P 2 Governing Equation v v g v v ⎟

Fundamental principles and applications of microfluidic ~ Microfluidics is currently under the spotlight for medical diagnostics and many other bioanalysis as its physical size manifested numerous advantages over labbased devices

What is digital microfluidics Elveflow ~ In fact digital microfluidics is a technology which derives from microfluidics using the principles of emulsion science 16 The aim of this technology is to create fluidfluid dispersion into channels principally waterinoil emulsion It allows the production of monodisperse dropsbubbles

Microfluidics Wikipedia ~ Microfluidics refers to the behaviour precise control and manipulation of fluids that are geometrically constrained to a small scale at which capillary penetration governs mass transport It is a multidisciplinary field that involves engineering physics chemistry biochemistry nanotechnology and biotechnology It has practical applications in the design of systems that process low volumes of fluids to achieve multiplexing automation and highthroughput screening Microfluidics emerged in

Fundamentals and Applications of Microfluidics ~ Library of Congress CataloginginPublication Data Nguyen NamTrung 1970– Fundamentals and applications of microfluidicsNamTrung Nguyen Steve Wereley


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