G. Kılıç Et Al. , "ZnO/CdO translocation in P2O5-TeO2-ZnO ternary glass systems: A reformative enhancement tool for physical, optical, and heavy-charged particles attenuation properties," OPTIK , vol.268, 2022
Kılıç, G. Et Al. 2022. ZnO/CdO translocation in P2O5-TeO2-ZnO ternary glass systems: A reformative enhancement tool for physical, optical, and heavy-charged particles attenuation properties. OPTIK , vol.268 .
Kılıç, G., İlik, E., Issa, S. A., Almisned, G., & Tekin, H., (2022). ZnO/CdO translocation in P2O5-TeO2-ZnO ternary glass systems: A reformative enhancement tool for physical, optical, and heavy-charged particles attenuation properties. OPTIK , vol.268.
Kılıç, GÖKHAN Et Al. "ZnO/CdO translocation in P2O5-TeO2-ZnO ternary glass systems: A reformative enhancement tool for physical, optical, and heavy-charged particles attenuation properties," OPTIK , vol.268, 2022
Kılıç, GÖKHAN Et Al. "ZnO/CdO translocation in P2O5-TeO2-ZnO ternary glass systems: A reformative enhancement tool for physical, optical, and heavy-charged particles attenuation properties." OPTIK , vol.268, 2022
Kılıç, G. Et Al. (2022) . "ZnO/CdO translocation in P2O5-TeO2-ZnO ternary glass systems: A reformative enhancement tool for physical, optical, and heavy-charged particles attenuation properties." OPTIK , vol.268.
@article{article, author={GÖKHAN KILIÇ Et Al. }, title={ZnO/CdO translocation in P2O5-TeO2-ZnO ternary glass systems: A reformative enhancement tool for physical, optical, and heavy-charged particles attenuation properties}, journal={OPTIK}, year=2022}