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Titlebook: Optical Particle Sizing; Theory and Practice Gérard Gouesbet,Gérard Gréhan Book 1988 Springer Science+Business Media New York 1988 Natur.co

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Particle Sizing by Inversion of Extinction Data,. In the so-called extinction methods,. one measures the spectral turbidity of the sample or, in other words, the extinction coefficient τ (k), for different values of the wavenumber k of the incident light. More precisely, k represents a reduced wave number which takes into account the refractive i
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Small Angle Light Scattering Patterns from Micrometer- Sized Spheroids,ies of the scatterer. This is particularly true for larger scatterer sizes (e.g. in the micrometer size range), where these angular intensity functions exhibit a rather complex succession of extrema of various amplitude at larger and larger ϑ.
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Laser Beam Scattering by Individual Spherical Particles: Numerical Results and Application to Optice working on both the theory and the applications of light scattering. Another paper presented in this symposium. is devoted to the recent developments of the theory of beam scattering by spherical, isotropic and homogeneous particles. This theory is called Generalized Lorenz-Mie Theory (GLMT).
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Calculation of Calibration Curves for the Phase Doppler Technique: Comparison between Mie Theory anatial and temporal resolution of a laser-Doppler anemometer. The range of diameters and particle concentrations which can be measured range from a few to several hundred micrometers and up to about 10. particles/m.. Instruments based on this principle have a number of advantages over others based on
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Optimal Scaling of the Inverse Fraunhofer Diffraction Particle Sizing Problem: The linear System Pr diffraction by a distribution of particles is considered. The condition of the resulting system of equations depends on the discretization strategy. However, the specific set of equations is shown to depend on the discretization scheme used for the scattering angle domain (the number, positions and
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