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This course introduces the basic driving forces for electric current, fluid flow, and mass transport, plus their application to a variety of biological systems.

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English

English [CC]

FREE

Description

Basic mathematical and engineering tools will be introduced, in the context of biology and physiology. Various electrokinetic phenomena are also considered as an example of coupled nature of chemical-electro-mechanical driving forces. Applications include transport in biological tissues and across membranes, manipulation of cells and biomolecules, and microfluidics

Course content

    • Introduction to the course Unlimited
    • Field 1: Introduction to EM theory Unlimited
    • Field 2: Maxwell’s equations Unlimited
    • Field 3: EM field for biosystems Unlimited
    • Field 4: EM field in aqueous media Unlimited
    • Field 5 Debye layer Unlimited
    • Field 6: Quasielectrostatics 2 Unlimited
    • Field 7: Laplace’s equation 1 Unlimited
    • Field 8: Laplace’s equation 2 Unlimited
    • Field 9: Laplace’s equation 3 Unlimited
    • EK2: Electroosmosis 1 Unlimited
    • EK3: Electroosmosis 2 Unlimited
    • EK5: Electrophoresis 2 Unlimited
    • EK6: Dielectrophoresis Unlimited
    • EK7: DLVO Unlimited

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Instructor

Massachusetts Institute of Technology
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