S. Ozdemir And S. Ozkan Yildirim, "Prediction of Water Level in Lakes by RNN-Based Deep Learning Algorithms to Preserve Sustainability in Changing Climate and Relationship to Microcystin," SUSTAINABILITY , vol.15, no.22, 2023
Ozdemir, S. And Ozkan Yildirim, S. 2023. Prediction of Water Level in Lakes by RNN-Based Deep Learning Algorithms to Preserve Sustainability in Changing Climate and Relationship to Microcystin. SUSTAINABILITY , vol.15, no.22 .
Ozdemir, S., & Ozkan Yildirim, S., (2023). Prediction of Water Level in Lakes by RNN-Based Deep Learning Algorithms to Preserve Sustainability in Changing Climate and Relationship to Microcystin. SUSTAINABILITY , vol.15, no.22.
Ozdemir, SERKAN, And SEVGİ ÖZKAN YILDIRIM. "Prediction of Water Level in Lakes by RNN-Based Deep Learning Algorithms to Preserve Sustainability in Changing Climate and Relationship to Microcystin," SUSTAINABILITY , vol.15, no.22, 2023
Ozdemir, SERKAN And Ozkan Yildirim, SEVGİ Ö. . "Prediction of Water Level in Lakes by RNN-Based Deep Learning Algorithms to Preserve Sustainability in Changing Climate and Relationship to Microcystin." SUSTAINABILITY , vol.15, no.22, 2023
Ozdemir, S. And Ozkan Yildirim, S. (2023) . "Prediction of Water Level in Lakes by RNN-Based Deep Learning Algorithms to Preserve Sustainability in Changing Climate and Relationship to Microcystin." SUSTAINABILITY , vol.15, no.22.
@article{article, author={SERKAN ÖZDEMİR And author={SEVGİ ÖZKAN YILDIRIM}, title={Prediction of Water Level in Lakes by RNN-Based Deep Learning Algorithms to Preserve Sustainability in Changing Climate and Relationship to Microcystin}, journal={SUSTAINABILITY}, year=2023}