Micro- and nanoscale fluid mechanics: transport in microfluidic devices
.PUBLICATION, DISTRIBUTION, ETC
Place of Publication, Distribution, etc.
New York
Name of Publisher, Distributor, etc.
Cambridge University Press
Date of Publication, Distribution, etc.
c2010
PHYSICAL DESCRIPTION
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xxiii, 512 p. : ill
GENERAL NOTES
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Includes bibliographical references and index
NOTES PERTAINING TO TITLE AND STATEMENT OF RESPONSIBILITY
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Brian Kirby
ORIGINAL VERSION NOTE
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1
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2
CONTENTS NOTE
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Machine generated contents note: 1. Kinematics, conservation equations, and boundary conditions for incompressible flow; 2. Unidirectional flow; 3. Hydraulic circuit analysis; 4. Passive scalar transport: dispersion, patterning, and mixing, 5. Electrostatics and electrodynamics; 6. Electroosmosis; 7. Potential fluid flow; 8. Stikes flow; 9. The diffuse structure of the electrical double layer; 01. Zeta potential in microchannels; 11. Species and charge transport; 21. Microchip chemical separations; 31. Particle electrophoresis; 41. DNA transport and analysis; 51. Nanofluidics: fluid and current flow in molecular-scale and thick-double-layer systems; 61. AC electrokinetics and the dynamics of diffuse charge; 71. Particle and droplet actuation: dielectrophoresis, magnetophoresis, and digital microfluidics; A. Units and fundamental constants; B. Properties of electrolyte solutions; C. Coordinate systems and vector calculus; D. Governing equation reference; E. Nondimensionalization and characteristic parameters; F. Multipolar solutions to the Laplace and Stokes equations; G. Complex functions; H. Interaction potentials: atomistic modeling of solvents and solutes