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Journal ArticleDOI

Scattered energy spectra from the interaction of multi-energy photons with single layer shields

Mohammad Moshaashaee
- 01 Sep 1999 - 
- Vol. 26, Iss: 14, pp 1303-1311
TLDR
In this article, the influence of the material atomic number and the bremsstrahlung contribution to the examined spectra are also considered, with concrete, steel and lead single layer shields.
About
This article is published in Annals of Nuclear Energy.The article was published on 1999-09-01. It has received 0 citations till now. The article focuses on the topics: Bremsstrahlung & Shields.

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References
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Journal ArticleDOI

Build-up factors for two energies (1.43 and 2.75 MeV) of photon penetration through single- and double-layer shielding slabs

TL;DR: Theoretical calculations and experiments have been performed in order to obtain the transmission dose build-up factor for γ-rays incident on stratified slabs as discussed by the authors, where six combinations of shields were produced from three materials; namely, aluminium (A1), steel (Fe), and lead (Pb).
Journal ArticleDOI

Benchmark data for /spl gamma/-rays emitted by an Na-24 source penetrating stratified shielding slabs

TL;DR: In this paper, experimentally determined scalar flux density spectra are presented for 1.37 and 2.75 MeV photons emitted by an Na-24 uniform disc source penetrating shields of six two-layer combinations.
Journal ArticleDOI

Angular properties for combined 6.13 and 7.12 MeV source photons penetrating concrete, steel and lead

TL;DR: In this paper, the angular flux spectra for combined source energies of 6.13 and 7.12 MeV, penetrating single layer shields of concrete, steel, and lead are examined, and a method for the calculation of the scattered photons energy, when multi-energy photons are emitted from a radioactive source is described.
Journal ArticleDOI

Angular properties of the scattered photons for combined 1.43 and 2.75 MeV source photons penetrating single and double-layer shields

TL;DR: In this paper, experimentally determined angular flux spectra for combined source energies of 1.43 and 2.75 MeV, penetrating single and double layer shields, are examined, and changes in the total scattered photon energy spectrum, as a function of polar angle and shield thickness, are also discussed.
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