R. Kurtulus Et Al. , "Synthesis, optical, structural, physical, and experimental gamma-ray transmission properties of high-density lead-boro-tellurite glasses: A multi-phases investigation towards providing a behavioral symmetry through Lead(II) oxide," CERAMICS INTERNATIONAL , vol.1, pp.1-12, 2023
Kurtulus, R. Et Al. 2023. Synthesis, optical, structural, physical, and experimental gamma-ray transmission properties of high-density lead-boro-tellurite glasses: A multi-phases investigation towards providing a behavioral symmetry through Lead(II) oxide. CERAMICS INTERNATIONAL , vol.1 , 1-12.
Kurtulus, R., Kavas, T., Kavaz, E., ALMisned, G., & Tekin, H., (2023). Synthesis, optical, structural, physical, and experimental gamma-ray transmission properties of high-density lead-boro-tellurite glasses: A multi-phases investigation towards providing a behavioral symmetry through Lead(II) oxide. CERAMICS INTERNATIONAL , vol.1, 1-12.
Kurtulus, Recep Et Al. "Synthesis, optical, structural, physical, and experimental gamma-ray transmission properties of high-density lead-boro-tellurite glasses: A multi-phases investigation towards providing a behavioral symmetry through Lead(II) oxide," CERAMICS INTERNATIONAL , vol.1, 1-12, 2023
Kurtulus, Recep Et Al. "Synthesis, optical, structural, physical, and experimental gamma-ray transmission properties of high-density lead-boro-tellurite glasses: A multi-phases investigation towards providing a behavioral symmetry through Lead(II) oxide." CERAMICS INTERNATIONAL , vol.1, pp.1-12, 2023
Kurtulus, R. Et Al. (2023) . "Synthesis, optical, structural, physical, and experimental gamma-ray transmission properties of high-density lead-boro-tellurite glasses: A multi-phases investigation towards providing a behavioral symmetry through Lead(II) oxide." CERAMICS INTERNATIONAL , vol.1, pp.1-12.
@article{article, author={Recep Kurtulus Et Al. }, title={Synthesis, optical, structural, physical, and experimental gamma-ray transmission properties of high-density lead-boro-tellurite glasses: A multi-phases investigation towards providing a behavioral symmetry through Lead(II) oxide}, journal={CERAMICS INTERNATIONAL}, year=2023, pages={1-12} }