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Bünyamin Alım

Researcher at Bayburt University

Publications -  34
Citations -  1273

Bünyamin Alım is an academic researcher from Bayburt University. The author has contributed to research in topics: Electromagnetic shielding & Mass attenuation coefficient. The author has an hindex of 12, co-authored 28 publications receiving 623 citations.

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Phy-X / PSD: Development of a user friendly online software for calculation of parameters relevant to radiation shielding and dosimetry

TL;DR: A user friendly online photon shielding and dosimetry (PSD) software available at https://phy-x.net/PSD has been developed for calculation of parameters relevant to shielding as discussed by the authors.
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Leaded brass alloys for gamma-ray shielding applications

TL;DR: In this paper, the mass attenuation coefficients (μ/ρ), half-value layers (HVL), tenth value layers (TVL), mean free paths (MFP) and effective atomic numbers (Zeff) were determined.
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A study of gamma attenuation property of UHMWPE/Bi2O3 nanocomposites

TL;DR: In this article, a nanocomposite material made of ultra-high molecular weight and bismuth oxide was developed to be used for protection from nuclear radiation, and the traditional hot-pressing technique was used for preparing composite samples.
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Phy-X/ZeXTRa: a software for robust calculation of effective atomic numbers for photon, electron, proton, alpha particle, and carbon ion interactions

TL;DR: Robust calculation of effective atomic numbers for photon, electron, proton, alpha particle and carbon ion interactions through the newly developed software, Phy-X/ZeXTRa, found to agree well with that obtained by other methods, in the low-energy region.
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Study on the radiation attenuation properties of locally available bees-wax as a tissue equivalent bolus material in radiotherapy

TL;DR: It is proposed that locally available bees-wax is a suitable substance to be used as bolus material practice for treat of cancer patient after estimation of the photon attenuation properties and evaluation of the results showed a good similarity to water/tissue.