O. KHAKPOUR Et Al. , "Metamaterials Based on a Gaseous Mixture: Analytical Modeling of Electrostriction Effect and Corresponding Brillouin Frequency Shift," Arabian Journal for Science and Engineering , 2024
KHAKPOUR, O. Et Al. 2024. Metamaterials Based on a Gaseous Mixture: Analytical Modeling of Electrostriction Effect and Corresponding Brillouin Frequency Shift. Arabian Journal for Science and Engineering .
KHAKPOUR, O., Sani, S. M. R., Rahighi, R., Eslamijahromi, M., & SABAH, C., (2024). Metamaterials Based on a Gaseous Mixture: Analytical Modeling of Electrostriction Effect and Corresponding Brillouin Frequency Shift. Arabian Journal for Science and Engineering .
KHAKPOUR, OMID Et Al. "Metamaterials Based on a Gaseous Mixture: Analytical Modeling of Electrostriction Effect and Corresponding Brillouin Frequency Shift," Arabian Journal for Science and Engineering , 2024
KHAKPOUR, OMID Et Al. "Metamaterials Based on a Gaseous Mixture: Analytical Modeling of Electrostriction Effect and Corresponding Brillouin Frequency Shift." Arabian Journal for Science and Engineering , 2024
KHAKPOUR, O. Et Al. (2024) . "Metamaterials Based on a Gaseous Mixture: Analytical Modeling of Electrostriction Effect and Corresponding Brillouin Frequency Shift." Arabian Journal for Science and Engineering .
@article{article, author={OMID KHAKPOUR Et Al. }, title={Metamaterials Based on a Gaseous Mixture: Analytical Modeling of Electrostriction Effect and Corresponding Brillouin Frequency Shift}, journal={Arabian Journal for Science and Engineering}, year=2024}