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- W298151166 abstract "Abstract : Mie theory, which treats only spheres, is usually employed to predict the scattering of light by particles whose size is of the order of the wavelength. The effects due to particle shape--a cylinder (4:1), prolate spheroids (4:1 and 2:1), a sphere, oblate spheroids (2:1 and 4:1), and a disk (4:1)--are investigated for 4 sizes spanning the resonant region. All particles have the same index of refraction, M= 1.61 - 10.004i, representative of silicates. microwave analog and theoretical methods are used to derive the scattered intensity and degree of polarization as a function of scattering angle along with the extinction. All results refer to an ensemble or a cloud of identical particles because averages have been taken over random particle-orientations. The degree of polarization, backscatter, and the radiation pressure cross-section are most sensitive to particle shape, implying the use of Mie theory may be inappropriate for many applications." @default.
- W298151166 created "2016-06-24" @default.
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- W298151166 date "1980-04-01" @default.
- W298151166 modified "2023-10-16" @default.
- W298151166 title "Scattering by Nonspherical Particulates." @default.
- W298151166 doi "https://doi.org/10.21236/ada099555" @default.
- W298151166 hasPublicationYear "1980" @default.
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