E. Tel Et Al. , "Obtaining a new empirical (n,2n) cross section formula using Flerov and Talyzin non-elastic cross sections at 14–15 MeV," Applied Radiation and Isotopes , vol.191, 2023
Tel, E. Et Al. 2023. Obtaining a new empirical (n,2n) cross section formula using Flerov and Talyzin non-elastic cross sections at 14–15 MeV. Applied Radiation and Isotopes , vol.191 .
Tel, E., Bülbül, A., SARPÜN, İ. H., & Doğan, A., (2023). Obtaining a new empirical (n,2n) cross section formula using Flerov and Talyzin non-elastic cross sections at 14–15 MeV. Applied Radiation and Isotopes , vol.191.
Tel, Eyyup Et Al. "Obtaining a new empirical (n,2n) cross section formula using Flerov and Talyzin non-elastic cross sections at 14–15 MeV," Applied Radiation and Isotopes , vol.191, 2023
Tel, Eyyup Et Al. "Obtaining a new empirical (n,2n) cross section formula using Flerov and Talyzin non-elastic cross sections at 14–15 MeV." Applied Radiation and Isotopes , vol.191, 2023
Tel, E. Et Al. (2023) . "Obtaining a new empirical (n,2n) cross section formula using Flerov and Talyzin non-elastic cross sections at 14–15 MeV." Applied Radiation and Isotopes , vol.191.
@article{article, author={Eyyup Tel Et Al. }, title={Obtaining a new empirical (n,2n) cross section formula using Flerov and Talyzin non-elastic cross sections at 14–15 MeV}, journal={Applied Radiation and Isotopes}, year=2023}