K. Altuntaş Et Al. , "Electrocatalytic degradation of oxytetracycline using three-dimensional electrode and optimization via fuzzy logic modeling," SEPARATION SCIENCE AND TECHNOLOGY , vol.57, no.3, pp.454-464, 2022
Altuntaş, K. Et Al. 2022. Electrocatalytic degradation of oxytetracycline using three-dimensional electrode and optimization via fuzzy logic modeling. SEPARATION SCIENCE AND TECHNOLOGY , vol.57, no.3 , 454-464.
Altuntaş, K., El Hadki, A., İlhan, F., Zrineh, A., El Hadki, H., Kabbaj, O. K., ... Dahchour, A.(2022). Electrocatalytic degradation of oxytetracycline using three-dimensional electrode and optimization via fuzzy logic modeling. SEPARATION SCIENCE AND TECHNOLOGY , vol.57, no.3, 454-464.
Altuntaş, Kübra Et Al. "Electrocatalytic degradation of oxytetracycline using three-dimensional electrode and optimization via fuzzy logic modeling," SEPARATION SCIENCE AND TECHNOLOGY , vol.57, no.3, 454-464, 2022
Altuntaş, Kübra Et Al. "Electrocatalytic degradation of oxytetracycline using three-dimensional electrode and optimization via fuzzy logic modeling." SEPARATION SCIENCE AND TECHNOLOGY , vol.57, no.3, pp.454-464, 2022
Altuntaş, K. Et Al. (2022) . "Electrocatalytic degradation of oxytetracycline using three-dimensional electrode and optimization via fuzzy logic modeling." SEPARATION SCIENCE AND TECHNOLOGY , vol.57, no.3, pp.454-464.
@article{article, author={Kübra Altuntaş Et Al. }, title={Electrocatalytic degradation of oxytetracycline using three-dimensional electrode and optimization via fuzzy logic modeling}, journal={SEPARATION SCIENCE AND TECHNOLOGY}, year=2022, pages={454-464} }