Large spatial frequency expansions for the source function, radiative flux, and intensity are obtained for an isotropically scattering finite two-dimensional medium exposed to collimated radiation. With these expansions, the single and double scattering results are obtained which are valid at small optical distances away from the incident radiation. Results are presented for a circular disk, exponential distribution and a Gaussian distribution of incident radiation. © 1979
The source function, radiative flux, and intensity at the boundaries are calculated for a two-dimens...
Two-dimensional scattering from a semi-infinite medium with a refractive index greater than unity is...
Integro-differential equations are developed for the source function, flux and intensity at the boun...
Large spatial frequency expansions for the source function, radiative flux, and intensity are obtain...
Large spatial frequency expansions for the source function, radiative flux, and intensity are obtain...
Large spatial frequency expansions for the source function, radiative flux, and intensity are obtain...
Small spatial frequency expansions for the source function and radiative flux are obtained for a pur...
Graphical and tabular results are presented for the back-scattered intensity from a finite two-dimen...
Exact formulations are presented for the source function, intensity and flux for a two-dimensional, ...
Exact formulations are presented for the source function, intensity and flux for a two-dimensional, ...
Exact formulations are presented for the source function, intensity and flux for a two-dimensional, ...
An exact formulation for the source function, the radiative flux, and the intensity is presented for...
AbstractAn exact formulation for the source function, the radiative flux, and the intensity is prese...
Two-dimensional multiple scattering in a rectangular medium exposed to uniform collimated radiation ...
Beginning with the solution for a medium with a refractive index of unity, results are presented for...
The source function, radiative flux, and intensity at the boundaries are calculated for a two-dimens...
Two-dimensional scattering from a semi-infinite medium with a refractive index greater than unity is...
Integro-differential equations are developed for the source function, flux and intensity at the boun...
Large spatial frequency expansions for the source function, radiative flux, and intensity are obtain...
Large spatial frequency expansions for the source function, radiative flux, and intensity are obtain...
Large spatial frequency expansions for the source function, radiative flux, and intensity are obtain...
Small spatial frequency expansions for the source function and radiative flux are obtained for a pur...
Graphical and tabular results are presented for the back-scattered intensity from a finite two-dimen...
Exact formulations are presented for the source function, intensity and flux for a two-dimensional, ...
Exact formulations are presented for the source function, intensity and flux for a two-dimensional, ...
Exact formulations are presented for the source function, intensity and flux for a two-dimensional, ...
An exact formulation for the source function, the radiative flux, and the intensity is presented for...
AbstractAn exact formulation for the source function, the radiative flux, and the intensity is prese...
Two-dimensional multiple scattering in a rectangular medium exposed to uniform collimated radiation ...
Beginning with the solution for a medium with a refractive index of unity, results are presented for...
The source function, radiative flux, and intensity at the boundaries are calculated for a two-dimens...
Two-dimensional scattering from a semi-infinite medium with a refractive index greater than unity is...
Integro-differential equations are developed for the source function, flux and intensity at the boun...