C. Kina Et Al. , "Deep learning and machine learning-based prediction of capillary water absorption of hybrid fiber reinforced self-compacting concrete," STRUCTURAL CONCRETE , vol.23, no.5, pp.3331-3358, 2022
Kina, C. Et Al. 2022. Deep learning and machine learning-based prediction of capillary water absorption of hybrid fiber reinforced self-compacting concrete. STRUCTURAL CONCRETE , vol.23, no.5 , 3331-3358.
Kina, C., TÜRK, K., & Tanyildizi, H., (2022). Deep learning and machine learning-based prediction of capillary water absorption of hybrid fiber reinforced self-compacting concrete. STRUCTURAL CONCRETE , vol.23, no.5, 3331-3358.
Kina, Ceren, KAZIM TÜRK, And Harun Tanyildizi. "Deep learning and machine learning-based prediction of capillary water absorption of hybrid fiber reinforced self-compacting concrete," STRUCTURAL CONCRETE , vol.23, no.5, 3331-3358, 2022
Kina, Ceren Et Al. "Deep learning and machine learning-based prediction of capillary water absorption of hybrid fiber reinforced self-compacting concrete." STRUCTURAL CONCRETE , vol.23, no.5, pp.3331-3358, 2022
Kina, C. TÜRK, K. And Tanyildizi, H. (2022) . "Deep learning and machine learning-based prediction of capillary water absorption of hybrid fiber reinforced self-compacting concrete." STRUCTURAL CONCRETE , vol.23, no.5, pp.3331-3358.
@article{article, author={Ceren Kina Et Al. }, title={Deep learning and machine learning-based prediction of capillary water absorption of hybrid fiber reinforced self-compacting concrete}, journal={STRUCTURAL CONCRETE}, year=2022, pages={3331-3358} }