Citation Formats
Novel Angular and Polarization Independent Band-Stop Frequency Selective Surface for Ultra-Wide Band Applications
  • IEEE
  • ACM
  • APA
  • Chicago
  • MLA
  • Harvard
  • BibTeX

A. KOCAKAYA Et Al. , "Novel Angular and Polarization Independent Band-Stop Frequency Selective Surface for Ultra-Wide Band Applications," RADIOENGINEERING , vol.28, no.1, pp.147-153, 2019

KOCAKAYA, A. Et Al. 2019. Novel Angular and Polarization Independent Band-Stop Frequency Selective Surface for Ultra-Wide Band Applications. RADIOENGINEERING , vol.28, no.1 , 147-153.

KOCAKAYA, A., ÇİMEN, S., & ÇAKIR, G., (2019). Novel Angular and Polarization Independent Band-Stop Frequency Selective Surface for Ultra-Wide Band Applications. RADIOENGINEERING , vol.28, no.1, 147-153.

KOCAKAYA, AYBİKE, SİBEL ÇİMEN, And GONCA ÇAKIR. "Novel Angular and Polarization Independent Band-Stop Frequency Selective Surface for Ultra-Wide Band Applications," RADIOENGINEERING , vol.28, no.1, 147-153, 2019

KOCAKAYA, AYBİKE Et Al. "Novel Angular and Polarization Independent Band-Stop Frequency Selective Surface for Ultra-Wide Band Applications." RADIOENGINEERING , vol.28, no.1, pp.147-153, 2019

KOCAKAYA, A. ÇİMEN, S. And ÇAKIR, G. (2019) . "Novel Angular and Polarization Independent Band-Stop Frequency Selective Surface for Ultra-Wide Band Applications." RADIOENGINEERING , vol.28, no.1, pp.147-153.

@article{article, author={AYBİKE KOCAKAYA Et Al. }, title={Novel Angular and Polarization Independent Band-Stop Frequency Selective Surface for Ultra-Wide Band Applications}, journal={RADIOENGINEERING}, year=2019, pages={147-153} }