E. Hou Et Al. , "Significance of 3D rectangular closed domain filled with charged particles and nanoparticles engaging finite element methodology," OPEN PHYSICS , vol.22, no.1, 2024
Hou, E. Et Al. 2024. Significance of 3D rectangular closed domain filled with charged particles and nanoparticles engaging finite element methodology. OPEN PHYSICS , vol.22, no.1 .
Hou, E., Nazir, U., Sohail, M., & Abdeljawad, T., (2024). Significance of 3D rectangular closed domain filled with charged particles and nanoparticles engaging finite element methodology. OPEN PHYSICS , vol.22, no.1.
Hou, Enran Et Al. "Significance of 3D rectangular closed domain filled with charged particles and nanoparticles engaging finite element methodology," OPEN PHYSICS , vol.22, no.1, 2024
Hou, Enran Et Al. "Significance of 3D rectangular closed domain filled with charged particles and nanoparticles engaging finite element methodology." OPEN PHYSICS , vol.22, no.1, 2024
Hou, E. Et Al. (2024) . "Significance of 3D rectangular closed domain filled with charged particles and nanoparticles engaging finite element methodology." OPEN PHYSICS , vol.22, no.1.
@article{article, author={Enran Hou Et Al. }, title={Significance of 3D rectangular closed domain filled with charged particles and nanoparticles engaging finite element methodology}, journal={OPEN PHYSICS}, year=2024}