Fast Neutron Scattering Cross Sections Of Elemental Sm Gd And Hf PDF Download

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Fast-neutron Scattering Cross Sections of Elemental Silver

Fast-neutron Scattering Cross Sections of Elemental Silver
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Total Pages:
Release: 1982
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ISBN:

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Differential neutron elastic- and inelastic-scattering cross sections of elemental silver are measured from 1.5 to 4.0 MeV at intervals of less than or equal to 200 keV and at 10 to 20 scattering angles distributed between 20 and 160°. Inelastically-scattered neutron groups are observed corresponding to the excitation of levels at; 328 +- 13, 419 +- 50, 748 +- 25, 908 +- 26, 1150 +- 38, 1286 +- 25, 1507 +- 20, 1623 +- 30, 1835 +- 20 and 1944 +- 26 keV. The experimental results are used to derive an optical-statistical model that provides a good description of the observed cross sections. The measured values are compared with corresponding quantities given in ENDF/B-V.


Nuclear Science Abstracts

Nuclear Science Abstracts
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Total Pages: 680
Release: 1976
Genre: Nuclear energy
ISBN:

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Fast-neutron Scattering Cross Sections of Elemental Zirconium

Fast-neutron Scattering Cross Sections of Elemental Zirconium
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Release: 1982
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Differential neturon-elastic-scattering cross sections of elemental zirconium are measured from 1.5 to 4.0 MeV at intervals of less than or equal to 200 keV. Inelastic-neutron-scattering cross sections corresponding to the excitation of levels at observed energies of: 914 +- 25, 1476 +- 37, 1787 +- 23, 2101 +- 26, 2221 +- 17, 2363 +- 14, 2791 +- 15 and 3101 +- 25 keV are determined. The experimental results are interpreted in terms of the optical-statistical model and are compared with corresponding quantities given in ENDF/B-V.


Fast-neutron Elastic-scattering Cross Sections of Elemental Tin

Fast-neutron Elastic-scattering Cross Sections of Elemental Tin
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Total Pages:
Release: 1982
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ISBN:

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Broad-resolution neutron-elastic-scattering cross sections of elemental tin are measured from 1.5 to 4.0 MeV. Incident-energy intervals are approx. 50 keV below 3.0 MeV and approx. 200 keV at higher energies. Ten to twenty scattering angles are used, distributed between approx. 20 and 160°. The experimental results are used to deduce the parameters of a spherical optical-statistical model and they are also compared with corresponding values given in ENDF/B-V.