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Titlebook: Adhesion of Cells, Viruses and Nanoparticles; Kevin Kendall,Michaela Kendall,Florian Rehfeldt Book 2011 Springer Science+Business Media B.

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Modelling Nanoparticle, Virus and Cell Adhesionnked via a it conjugated system, has emerged as a key-concept in quadratic nonlinear optics. The most compact packing of such microscopic units is achieved in molecular single crystals where molecules are arranged in translationnaly invariant non-centrosymetric lattices /3/. Such type of molecular o
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to revive and grow again in a dramatic and expolisve manner in response to new developments. This has been the case for the fields of optics and atomic physics. In the 1950s, and perhaps into the early 1960s, both fields appeared mature, fully developed, and perhaps even a bit dull as a consequence
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Statistics of Adhesion at Nanoscaleevels m, n by the order of the width of the corresponding spectral line. For gas systems at moderate pressures and electron densities a typical value of line width in the optical and infrared regions of the spectrum is 10.-10. sec.. The transition frequencies are approximately 10. sec.. Such a relat
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Measurement Methodsform birefringence for phase-matching. We emphasize the role of a careful characterization in achieving parametric fluorescence and oscillation. In particular, we present the results of two complementary optical techniques, providing a more accurate estimate of refractive indices than extrapolated f
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ernal states and of producing either of two different stable outputs. At any given time the internal state and corresponding output depend on the history of operation of the device; by temporary adjustment of the inputs it should be possible to set or reset the device to either state. Thus the lates
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