Electrokinetics and Electrohydrodynamics in Microsystems by Antonio Ramos

By Antonio Ramos

One of the so much promising strategies to address small items on the micrometer scale are those who hire electric forces, that have the benefits of voltage-based keep an eye on and dominance over different forces. The publication offers a state of the art wisdom on either theoretical and utilized facets of manipulation of colloidal debris and fluids in microsystems and covers the subsequent themes: dielectrophoresis, electrowetting, electrohydrodynamics in microsystems, and electrokinetics of fluids and debris. The publication is addressed to doctoral scholars, younger or senior researchers, chemical engineers and/or biotechnologists with an curiosity in microfluidics, lab-on-chip or MEMS.

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The imaginary part is zero at high and low frequencies, and at the relaxation frequency fM W has a value 1 2 εp − εm σ p − σm − εp + 2εm σp + 2σm (71) The frequency variation of the real and imaginary parts of the ClausiusMossotti factor is shown in figure (12). In general, the real part of the Clausius-Mossotti factor is bounded by 1 and -1/2, and the imaginary part bounded by -3/4 and 3/4. 52 Nicolas G. Green Figure 12. Plot of the real (solid line) and imaginary (dotted line) parts of the Clausius-Mossotti factor as a function of frequency for arbitrary values of permittivity and conductivity.

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