1. Kubacki, R., R. Przesmycki, and J. Ferenc, "Wlasności elektromagnetyczne nanokrystalicznego proszku stopu Fe-Si-B-Cu-Nb w zakresie mikrofalowym," Przeglad Elektrotechniczny (Electrical Review), NR 12b/2011, 92-95, 2011, ISSN: 0033-2097. Google Scholar
2. Kubacki, Roman, Jarosław Ferenc, Rafał Przesmycki, and Marian Wnuk, "The nanocrystalline FeSiBCuNb finemet absorption properties at microwaves," IEEE Transactions on Electromagnetic Compatibility, Vol. 54, No. 1, 93–100, February 2012.
doi:10.1109/temc.2011.2179807 Google Scholar
3. Kubacki, Roman, Leszek Nowosielski, and Rafał Przesmycki, "The improved technique of electric and magnetic parameters measurements of powdered materials," Advances in Engineering Software, Vol. 42, No. 11, 911–916, November 2011.
doi:10.1016/j.advengsoft.2011.07.006 Google Scholar
4. Kubacki, R., L. Nowosielski, and R. Przesmycki, "Technique for the electric and magnetic parameter measurement of powdered materials," Vol. 1, 241–250, May 2009.
doi:10.2495/cmem090221 Google Scholar
5. Piwowarczyk, K., R. Przesmycki, L. Nowosielski, and M. Wnuk, "Pomiar odporności urza̧dzeń informatycznych na promieniowane pole elektryczne o czȩstotliwości radiowej w zakresie (80–1000) MHz," Przeglad Elektrotechniczny (Electrical Review), R.86 NR 3/2010, 165–167, 2010, ISSN: 0033-2097. Google Scholar
6. Nowosielski, L., R. Przesmycki, and M. Wnuk, "The laboratory stand for conducted emissions measurement in accordance with the military standard," IEEE International Symposioum on Electromagnetic Comatibility, 275–278, 2010. Google Scholar
7. Nowosielski, L., Rafa Przesmycki, and M. Wnuk, "The laboratory stand for conducted emissions measurement in accordance with the military standard," IEEE International Symposioum on Electromagnetic Comatibility, 275–278, July 2010.
doi:10.1109/isemc.2010.5711284 Google Scholar
8. Przesmycki, Rafal, M. Wnuk, L. Nowosielski, and K. Piwowarczyk, "Small chambers shielding efficiency measurements," PIERS Online, No. 3, 256–260, 2011. Google Scholar
9. Nowosielski, L., R. Przesmycki, M. Wnuk, and J. Rychlica, "The methods of measuring attenuation of thin absorbent materials used for electromagnetic shielding," PIERS Online, Vol. 7, No. 3, 261-265, 2011. Google Scholar
10. Kubacki, R., L. Nowosielski, R. Przesmycki, and R. Frender, "Metoda pomiarów przenikalności elektrycznej i magnetycznej materiaÃlów proszkowych," Przeglad Elektrotechniczny (Electrical Review), R.85 NR 12/2009, 83–87, 2009, ISSN: 0033-2097. Google Scholar
11. Przesmycki, R., "Measurement and analysis of compromising emanation for laser printer," PIERS Proceedings, Guangzhou, China, August 25–28, 2014. Google Scholar
12. Przesmycki, Rafal and P. Skokowski, "Dual band microstrip antenna," PIERS Proceedings, Guangzhou, China, August 25–28, 2014. Google Scholar
13. Kubacki, Roman, Marian Wnuk, and Jozef Modelski, "From nanoelectronics to the advanced microwave applications-conferences of the fifth microwave and radar week (MRW2012) [conference report]," IEEE Microwave Magazine, Vol. 13, No. 7, 94–96, November 2012.
doi:10.1109/mmm.2012.2217252 Google Scholar
14. Kubacki, R., M. Wnuk, W. Kolosowski, and J. Sobiech, "New approach to electromagnetic field calculations in the near-field of microwave antennas," Computational Methods and Experimental Measurements, XI Book Series: Computational Engineering, Vol. 4, 413-422, 2003. Google Scholar
15. Kubacki, R., E. Cwalina, M. Kuchta, and A. Dukata, "Specyfika rozkÃladu pola elektromagnetycznego wewnatrz pomieszczeń i obudów komputerowych od wysokomocowych impulsów elektromagnetycznych," Przeglad Elektrotechniczny (Electrical Review), No. 12b, 209-212, 2012. Google Scholar
16. Kubacki, R. and S. Lamari, "The UWB microstrip antenna with metamaterial and periodic structure," PIERS Proceedings, Guangzhou, China, August 25–28, 2014. Google Scholar
17. Kubacki, R., "New attempt to building materials permittivity measurements," PIERS Proceedings, Guangzhou, China, August 25–28, 2014. Google Scholar
18. Lamari, Salim, Roman Kubacki, and Miroslaw Czyzewski, "Frequency range widening of the microstrip antenna with the sierpinski fractal patterned metamaterial structure," 2014 20th International Conference on Microwaves, Radar and Wireless Communications (MIKON), 1–3, June 2014.
doi:10.1109/mikon.2014.6899961 Google Scholar
19. Gajewski, P., J. Lopatka, L. Nowosielski, B. Uljasz, and Z. Piotrowski, "Multimedia transmission over HF links," MILCOM 2000 Proceedings. 21st Century Military Communications. Architectures and Technologies for Information Superiority (Cat. No.00CH37155), Vol. 1, 45–47, 2000.
doi:10.1109/milcom.2000.904910 Google Scholar
20. Nowosielski, Leszek, Marian Wnuk, and Cezary Ziolkowski, "Interlaboratory tests in scope of measurement of radio disturbance," 2009 European Microwave Conference (EuMC), 288–291, September 2009.
doi:10.23919/eumc.2009.5296286 Google Scholar
21. Nowosielski, L., J. Lopatka, and M. Silaczuk, "Modelling of electromagnetic wave propagation with the use of the ray-tracing method," PIERS Proceedings, Guangzhou, China, August 25–28, 2014. Google Scholar
22. Nowosielski, L. and C. Piotrowski, "Honeycomb ventilation grill shielding effectiveness measuring methodology," PIERS Proceedings, Guangzhou, China, August 25–28, 2014. Google Scholar
23. Nowosielski, Leszek and M. Wnuk, "Compromising emanations from USB 2 interface," PIERS Proceedings, Guangzhou, China, August 25–28, 2014. Google Scholar
24. Kaszuba, A., R. Checinski, M. Kryk, J. Lopatka, and L. Nowosielski, "Electromagnetically shielded real-time MANET testbed," PIERS Proceedings, Guangzhou, China, August 25–28, 2014. Google Scholar
25. Nowosielski, L. and J. Lopatka, "Measurement of shielding effectiveness with the method using high power electromagnetic pulse generator," PIERS Proceedings, Guangzhou, China, August 25–28, 2014. Google Scholar
26. Gruszczynski, Mariusz, Marian Wnuk, and Leszek Nowosielski, "Multisystem microstrip antenna for mobile communications," Proceedings of the 2012 IEEE International Symposium on Antennas and Propagation, 1–2, July 2012.
doi:10.1109/aps.2012.6349179 Google Scholar