M. KALKAN Et Al. , "Predictions of solar activity cycles 25 and 26 using non-linear autoregressive exogenous neural networks," Monthly Notices of the Royal Astronomical Society , vol.523, no.1, pp.1175-1181, 2023
KALKAN, M. Et Al. 2023. Predictions of solar activity cycles 25 and 26 using non-linear autoregressive exogenous neural networks. Monthly Notices of the Royal Astronomical Society , vol.523, no.1 , 1175-1181.
KALKAN, M., Fawzy, D. E., & SAYGAÇ, A. T., (2023). Predictions of solar activity cycles 25 and 26 using non-linear autoregressive exogenous neural networks. Monthly Notices of the Royal Astronomical Society , vol.523, no.1, 1175-1181.
KALKAN, Merve, Diaa E. Fawzy, And Ahmet Talat SAYGAÇ. "Predictions of solar activity cycles 25 and 26 using non-linear autoregressive exogenous neural networks," Monthly Notices of the Royal Astronomical Society , vol.523, no.1, 1175-1181, 2023
KALKAN, Merve Et Al. "Predictions of solar activity cycles 25 and 26 using non-linear autoregressive exogenous neural networks." Monthly Notices of the Royal Astronomical Society , vol.523, no.1, pp.1175-1181, 2023
KALKAN, M. Fawzy, D. E. And SAYGAÇ, A. T. (2023) . "Predictions of solar activity cycles 25 and 26 using non-linear autoregressive exogenous neural networks." Monthly Notices of the Royal Astronomical Society , vol.523, no.1, pp.1175-1181.
@article{article, author={Merve KALKAN Et Al. }, title={Predictions of solar activity cycles 25 and 26 using non-linear autoregressive exogenous neural networks}, journal={Monthly Notices of the Royal Astronomical Society}, year=2023, pages={1175-1181} }