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Unravelling the impact of unusual heating rate, dose-response and trap parameters on the thermoluminescence of Sm3+ activated GdAl3(BO3)4 phosphors exposed to beta particle irradiation
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G. Souadi Et Al. , "Unravelling the impact of unusual heating rate, dose-response and trap parameters on the thermoluminescence of Sm3+ activated GdAl3(BO3)4 phosphors exposed to beta particle irradiation," Radiation Physics and Chemistry , vol.213, 2023

Souadi, G. Et Al. 2023. Unravelling the impact of unusual heating rate, dose-response and trap parameters on the thermoluminescence of Sm3+ activated GdAl3(BO3)4 phosphors exposed to beta particle irradiation. Radiation Physics and Chemistry , vol.213 .

Souadi, G., Kaynar, Ü. H., Sonsuz, M., AKÇA ÖZALP, S., AYVACIKLI, M., TOPAKSU, M., ... Ozmen, O.(2023). Unravelling the impact of unusual heating rate, dose-response and trap parameters on the thermoluminescence of Sm3+ activated GdAl3(BO3)4 phosphors exposed to beta particle irradiation. Radiation Physics and Chemistry , vol.213.

Souadi, G. Et Al. "Unravelling the impact of unusual heating rate, dose-response and trap parameters on the thermoluminescence of Sm3+ activated GdAl3(BO3)4 phosphors exposed to beta particle irradiation," Radiation Physics and Chemistry , vol.213, 2023

Souadi, G. Et Al. "Unravelling the impact of unusual heating rate, dose-response and trap parameters on the thermoluminescence of Sm3+ activated GdAl3(BO3)4 phosphors exposed to beta particle irradiation." Radiation Physics and Chemistry , vol.213, 2023

Souadi, G. Et Al. (2023) . "Unravelling the impact of unusual heating rate, dose-response and trap parameters on the thermoluminescence of Sm3+ activated GdAl3(BO3)4 phosphors exposed to beta particle irradiation." Radiation Physics and Chemistry , vol.213.

@article{article, author={G. Souadi Et Al. }, title={Unravelling the impact of unusual heating rate, dose-response and trap parameters on the thermoluminescence of Sm3+ activated GdAl3(BO3)4 phosphors exposed to beta particle irradiation}, journal={Radiation Physics and Chemistry}, year=2023}