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Extra resources for Charged Particle Cross-Section Database for Med Radioisotope Prodn (IAEA TECDOC-1211)
SID-7, PINSTECH, Islamabad (1996). , Nuclear Data for Science and Technology, Mito, Japan (1988) 115. , Global test of modified precompound decay models, Phys. Rev. C 28 (1983) 1475–1492. , Calculation of g-ray cascades in code ALICE, Nucl. Instrum. Methods in Phys. Research A265 (1988) 490–494. , Macrospic systematics of nuclear level densities, Nucl. Phys. A349 (1980) 10–28. , A-priori preequilibrium decay models, Nucl. Phys. A213 (1973) 570– 588. , Nuclear and nucleon scattering of high-energy electrons, Annu.
30]) is that nucleus has a density distribution which can affect PE decay in two ways. First, the nucleon mean free path is expected to be longer (on average about a factor of two) in the diffuse nuclear surface. Secondly, in a local density approximation, there is a density dependent limit to the hole depth; this will be expected to additionally modify the Ericson state densities with respect to use of a single, averaged potential depth. These two changes were incorporated into the ‘geometry dependent hybrid model’.
A166 (1971) 231–240. , Intermediate-state transition rates in the exciton model, Nucl. Phys. A226 (1974) 347–364. , New version of the advanced computer code ALICE-IPPE, Rep. INDC(CCP)-410, IAEA, Vienna (1998). , The SPEC Code, Commun. Nucl. Data Prog. 10 (1993) 53. , New precompound decay model, Phys. Rev. C 54 (1996) 1341–1349. , UCRL-JC-109052 (1991) (unpublished). , A computer code based on Hauser-Feshbach and Moldauer theory for nuclear cross section calculations, Rep. INDC(PAK)-011, IAEA, Vienna (1995).
Charged Particle Cross-Section Database for Med Radioisotope Prodn (IAEA TECDOC-1211)