|Author||Sahni, D. C.|
|Source||United States Department of Energy Office of Scientific and Technical Information|
|Subject Keyword||Physics (Nuclear)-Neutron Interactions with Matter ♦ NEUTRON TRANSPORT THEORY- SPHERICAL CONFIGURATION ♦ GEOMETRY ♦ GREEN FUNCTION ♦ INTEGRAL EQUATIONS ♦ SERIES EXPANSION ♦ SINGULARITY ♦ SYMMETRY|
|Abstract||The density transform method was extended to cover spherically symmetric transport problems in a spherical shell. The density transform is expanded in plane geometry normal modes and explicit singular integral equations are derived for the expansion coefficients. It is shown that the Green's function method, introduced by Case et al., gives the same representation of total flux. The singular integral equations for the expansion coefficients are rederived using the analytic properties of some sectionally holomorphic functions introduced previously. (auth)|
|Learning Resource Type||Article|
|Publisher Department||Bhabha Atomic Research Centre, Bombay|
|Publisher Place||United States|
|Journal||J. Math. Phys.|
|Organization||Bhabha Atomic Research Centre, Bombay|
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