## Scattering of Light in a Turbid Medium |

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absorption amplitudes angle of incidence approximation assume asymptotic attenuation coefficient axis Bessel functions Blumer body bundle calculations Chapter cloud CN CN CN coincides components computed constant corresponding curve degree of polarization determined diffracted field dipole ellipsoid employ equals zero equation expressions fact factor flux fogs following formula forward direction geometric optics given important increase indicated infinite integral intensity distribution large particles Legendre polynomials Let us investigate light scattered magnetic oscillations maximum Maxwell equations means method obtain the following p-rays partial waves particle dimensions plane problem quantity radiation radius rainbow Rayleigh scattering readily obtain reflecting particles reflection coefficient refractive index relationship results derived scattered light scattering angle scattering coefficient scattering indicatrix scattering intensity scattering of light shown in Figure Shuleykin small particles solution sphere Table theory transparent turbid values vector visible region