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On using Magneto-static Responsive particles as switching elements to reconfigure microwave filters.

, , , , , , and . EIT, page 192-195. IEEE, (2016)

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Changing the Operation of Small Geometrically Complex EBG-Based Antennas With Micron-Sized Particles That Respond to Magneto-Static Fields., , , , , , and . IEEE Access, (2020)The Potentials, Challenges, and Future Directions of On-Chip-Antennas for Emerging Wireless Applications - A Comprehensive Survey., , , and . IEEE Access, (2019)A Frequency Reconfigurable Dual-Band Monopole Antenna for Wireless Applications., , , , and . ISNCC, page 1-5. IEEE, (2018)An initial investigation on the use of carbon microfibers for conformal transmission lines., , , , , , , , and . EIT, page 1-5. IEEE, (2013)On using Magneto-static Responsive particles as switching elements to reconfigure microwave filters., , , , , , and . EIT, page 192-195. IEEE, (2016)On the Shielding Properties of Woven Microfiber Materials for Potential EMC Applications of IoT Devices., , , , and . EIT, page 188-192. IEEE, (2022)Radiation performance and Specific Absorption Rate (SAR) analysis of a compact dual band balanced antenna., , , , , and . EIT, page 672-675. IEEE, (2015)A small footprint ultra-wideband multiple-input multiple-output antenna., , , , , , and . EIT, page 662-666. IEEE, (2015)On using graphene-based conductors as transmission lines for feed networks in printed antenna arrays., , , , and . EIT, page 681-683. IEEE, (2015)A Conformal Frequency Reconfigurable Antenna with Multiband and Wideband Characteristics., , , , , and . Sensors, 22 (7): 2601 (2022)