M. Kurudirek, "Effective atomic number, energy loss and radiation damage studies in some materials commonly used in nuclear applications for heavy charged particles such as H, C, Mg, Fe, Te, Pb and U," RADIATION PHYSICS AND CHEMISTRY , vol.122, pp.15-23, 2016
Kurudirek, M. 2016. Effective atomic number, energy loss and radiation damage studies in some materials commonly used in nuclear applications for heavy charged particles such as H, C, Mg, Fe, Te, Pb and U. RADIATION PHYSICS AND CHEMISTRY , vol.122 , 15-23.
Kurudirek, M., (2016). Effective atomic number, energy loss and radiation damage studies in some materials commonly used in nuclear applications for heavy charged particles such as H, C, Mg, Fe, Te, Pb and U. RADIATION PHYSICS AND CHEMISTRY , vol.122, 15-23.
Kurudirek, Murat. "Effective atomic number, energy loss and radiation damage studies in some materials commonly used in nuclear applications for heavy charged particles such as H, C, Mg, Fe, Te, Pb and U," RADIATION PHYSICS AND CHEMISTRY , vol.122, 15-23, 2016
Kurudirek, Murat. "Effective atomic number, energy loss and radiation damage studies in some materials commonly used in nuclear applications for heavy charged particles such as H, C, Mg, Fe, Te, Pb and U." RADIATION PHYSICS AND CHEMISTRY , vol.122, pp.15-23, 2016
Kurudirek, M. (2016) . "Effective atomic number, energy loss and radiation damage studies in some materials commonly used in nuclear applications for heavy charged particles such as H, C, Mg, Fe, Te, Pb and U." RADIATION PHYSICS AND CHEMISTRY , vol.122, pp.15-23.
@article{article, author={Murat KURUDİREK}, title={Effective atomic number, energy loss and radiation damage studies in some materials commonly used in nuclear applications for heavy charged particles such as H, C, Mg, Fe, Te, Pb and U}, journal={RADIATION PHYSICS AND CHEMISTRY}, year=2016, pages={15-23} }