E. Tüzemen Et Al. , "Modeling of temperature-dependent photoluminescence of GaN epilayer by artificial neural network," Journal of the Australian Ceramic Society , vol.59, no.5, pp.1145-1159, 2023
Tüzemen, E. Et Al. 2023. Modeling of temperature-dependent photoluminescence of GaN epilayer by artificial neural network. Journal of the Australian Ceramic Society , vol.59, no.5 , 1145-1159.
Tüzemen, E., YÜKSEK, A. G., DEMİR, İ., Horoz, S., & ALTUNTAŞ, İ., (2023). Modeling of temperature-dependent photoluminescence of GaN epilayer by artificial neural network. Journal of the Australian Ceramic Society , vol.59, no.5, 1145-1159.
Tüzemen, EBRU Et Al. "Modeling of temperature-dependent photoluminescence of GaN epilayer by artificial neural network," Journal of the Australian Ceramic Society , vol.59, no.5, 1145-1159, 2023
Tüzemen, EBRU Ş. Et Al. "Modeling of temperature-dependent photoluminescence of GaN epilayer by artificial neural network." Journal of the Australian Ceramic Society , vol.59, no.5, pp.1145-1159, 2023
Tüzemen, E. Et Al. (2023) . "Modeling of temperature-dependent photoluminescence of GaN epilayer by artificial neural network." Journal of the Australian Ceramic Society , vol.59, no.5, pp.1145-1159.
@article{article, author={EBRU ŞENADIM TÜZEMEN Et Al. }, title={Modeling of temperature-dependent photoluminescence of GaN epilayer by artificial neural network}, journal={Journal of the Australian Ceramic Society}, year=2023, pages={1145-1159} }