Haq, I.; Yassen, M.F.; Ghoneim, M.E.; Bilal, M.; Ali, A.; Weera, W.
Computational Study of MHD Darcy–Forchheimer Hybrid Nanofluid Flow under the Influence of Chemical Reaction and Activation Energy over a Stretching Surface. Symmetry 2022, 14, 1759.
https://doi.org/10.3390/sym14091759
AMA Style
Haq I, Yassen MF, Ghoneim ME, Bilal M, Ali A, Weera W.
Computational Study of MHD Darcy–Forchheimer Hybrid Nanofluid Flow under the Influence of Chemical Reaction and Activation Energy over a Stretching Surface. Symmetry. 2022; 14(9):1759.
https://doi.org/10.3390/sym14091759
Chicago/Turabian Style
Haq, Izharul, Mansour F. Yassen, Mohamed E. Ghoneim, Muhammad Bilal, Aatif Ali, and Wajaree Weera.
2022. "Computational Study of MHD Darcy–Forchheimer Hybrid Nanofluid Flow under the Influence of Chemical Reaction and Activation Energy over a Stretching Surface" Symmetry 14, no. 9: 1759.
https://doi.org/10.3390/sym14091759
APA Style
Haq, I., Yassen, M. F., Ghoneim, M. E., Bilal, M., Ali, A., & Weera, W.
(2022). Computational Study of MHD Darcy–Forchheimer Hybrid Nanofluid Flow under the Influence of Chemical Reaction and Activation Energy over a Stretching Surface. Symmetry, 14(9), 1759.
https://doi.org/10.3390/sym14091759