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Sultan J. Alsufyani

Researcher at Taif University

Publications -  14
Citations -  34

Sultan J. Alsufyani is an academic researcher from Taif University. The author has contributed to research in topics: Chemistry & Engineering. The author has an hindex of 1, co-authored 1 publications receiving 4 citations. Previous affiliations of Sultan J. Alsufyani include Idaho State University.

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Impact of gamma irradiation on the structural, linear and nonlinear optical properties of lead oxide incorporated PVA/graphene blend for shielding applications

TL;DR: In this article , the structural, linear and nonlinear optical performance of PVA/graphene polymeric composites (PVA/Gr PCs) incorporated with lead oxide (Pb3O4) have been modified by exposing with gamma irradiation (γ-irradiation).
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Influence of iron (III) oxide on the optical, mechanical, physical, and radiation shielding properties of sodium-barium-vanadate glass system

TL;DR: In this article , the physical, optical, mechanical, and radiation absorption features of a Sodium-barium-vanadate glass system containing iron (III) oxide were obtained by direct calculations and Monte Carlo simulations.
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Effect of Postharvest UV-C Radiation on Nutritional Quality, Oxidation and Enzymatic Browning of Stored Mature Date

TL;DR: The effect of three doses of UV-C radiation (1, 3 and 6 kJ m−2) on conservation potential after harvest of the Deglet-Nour date for five months of storage at 10 °C was studied as discussed by the authors .
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Gold bearing ore assays using 197Au(γ,n)196Au photonuclear reaction

TL;DR: In this paper, the feasibility of the gold bearing ore assay utilizing the 197Au(γ,n)196Au photonuclear reaction was investigated using an electron accelerator with endpoint energies ranging from 25 to 40 MeV.
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A broad analysis of directly and indirectly ionizing radiation interaction parameters of PbF2-CaF2-Bi2O3-B2O3-Cr2O3 glass system

TL;DR: In this paper , the authors present the shielding parameters for directly and indirectly ionization radiations of PCBBC glasses with the chemical composition: xPbF2−(25-x)CaF2-49.8B2O3-25Bi2O-3 and coded as PCBBC1-PCBBC4 for x = 0, 5, 15, and 25 mol.