A. G. Mazare Et Al. , "Enhanced Sensing Capacity of Terahertz Triple-Band Metamaterials Absorber Based on Pythagorean Fractal Geometry," MATERIALS , vol.15, no.18, 2022
Mazare, A. G. Et Al. 2022. Enhanced Sensing Capacity of Terahertz Triple-Band Metamaterials Absorber Based on Pythagorean Fractal Geometry. MATERIALS , vol.15, no.18 .
Mazare, A. G., Abdulkarim, Y., Karim, A. S., BAKIR, M., Taouzari, M., Muhammadsharif, F. F., ... Appasani, B.(2022). Enhanced Sensing Capacity of Terahertz Triple-Band Metamaterials Absorber Based on Pythagorean Fractal Geometry. MATERIALS , vol.15, no.18.
Mazare, Alin Et Al. "Enhanced Sensing Capacity of Terahertz Triple-Band Metamaterials Absorber Based on Pythagorean Fractal Geometry," MATERIALS , vol.15, no.18, 2022
Mazare, Alin G. Et Al. "Enhanced Sensing Capacity of Terahertz Triple-Band Metamaterials Absorber Based on Pythagorean Fractal Geometry." MATERIALS , vol.15, no.18, 2022
Mazare, A. G. Et Al. (2022) . "Enhanced Sensing Capacity of Terahertz Triple-Band Metamaterials Absorber Based on Pythagorean Fractal Geometry." MATERIALS , vol.15, no.18.
@article{article, author={Alin Gheorghita Mazare Et Al. }, title={Enhanced Sensing Capacity of Terahertz Triple-Band Metamaterials Absorber Based on Pythagorean Fractal Geometry}, journal={MATERIALS}, year=2022}