Khan, U.; Zaib, A.; Ishak, A.; Alotaibi, A.M.; Elattar, S.; Pop, I.; Abed, A.M.
Impact of an Induced Magnetic Field on the Stagnation-Point Flow of a Water-Based Graphene Oxide Nanoparticle over a Movable Surface with Homogeneous–Heterogeneous and Chemical Reactions. Magnetochemistry 2022, 8, 155.
https://doi.org/10.3390/magnetochemistry8110155
AMA Style
Khan U, Zaib A, Ishak A, Alotaibi AM, Elattar S, Pop I, Abed AM.
Impact of an Induced Magnetic Field on the Stagnation-Point Flow of a Water-Based Graphene Oxide Nanoparticle over a Movable Surface with Homogeneous–Heterogeneous and Chemical Reactions. Magnetochemistry. 2022; 8(11):155.
https://doi.org/10.3390/magnetochemistry8110155
Chicago/Turabian Style
Khan, Umair, Aurang Zaib, Anuar Ishak, Abeer M. Alotaibi, Samia Elattar, Ioan Pop, and Ahmed M. Abed.
2022. "Impact of an Induced Magnetic Field on the Stagnation-Point Flow of a Water-Based Graphene Oxide Nanoparticle over a Movable Surface with Homogeneous–Heterogeneous and Chemical Reactions" Magnetochemistry 8, no. 11: 155.
https://doi.org/10.3390/magnetochemistry8110155
APA Style
Khan, U., Zaib, A., Ishak, A., Alotaibi, A. M., Elattar, S., Pop, I., & Abed, A. M.
(2022). Impact of an Induced Magnetic Field on the Stagnation-Point Flow of a Water-Based Graphene Oxide Nanoparticle over a Movable Surface with Homogeneous–Heterogeneous and Chemical Reactions. Magnetochemistry, 8(11), 155.
https://doi.org/10.3390/magnetochemistry8110155