## Convergence of transport solutions for thin slab cells |

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absorptions equal total angular flux angular region anisotropic component cell having regional constant flux level constant flux term discrete directions discrete ordinate method DISCRETE QUADRATURE ANGLES double Gaussian quadrature DP-5 Using Discrete due to neutrons effective sources eigenvalue elastic scattering sources energy groups equal total actual equivalent homogeneous cell exponential integral Flux Advantage Factors Flux at Various flux discontinuity Fortran homo integral transport solution interface isotropic flux mean free path multigroup neighboring source regions neutron inventory requirement nonsource region number of discrete number of neighboring Obtained by DP-5 predominant source region regional cross sections regional source levels regional thicknesses satisfy the neutron SCALAR FLUX DISTRIBUTIONS shown in Fig simplified integral transport spatial flux shape spherical harmonics THIN SLAB CELLS total absorptions equal total actual sources total first collisions total mean free uncol Uncollided Flux Advantage uncollided flux shape uncollided flux solution UNCOLLIDED SCALAR FLUX values Various Positions vergence