1917

🎯 Welcome to MyBunny.TV – Unlimited Entertainment Awaits 🎯

Enjoy 35,000+ Premium HD Channels, Lightning-fast instant activation, 24/7 customer support, Multi-device compatibility, and experience lightning-fast instant activation.
Reliable, stable, and built for the ultimate streaming experience – no hassles, just entertainment!
MyBunny.TV – Cheaper Than Cable • Up to 45% Off Yearly Plans • All NFL, ESPN, PPV Events Included 🎯

🎉 Join the fastest growing IPTV community today and discover why everyone is switching to MyBunny.TV!

🚀 Stream Now

Faruque M. Metamaterials and Metasurfaces. Radiation,.Terahertz Frequencies 2025

Magnet download icon for Faruque M. Metamaterials and Metasurfaces. Radiation,.Terahertz Frequencies 2025 Download this torrent!

Faruque M. Metamaterials and Metasurfaces. Radiation,.Terahertz Frequencies 2025

To start this P2P download, you have to install a BitTorrent client like qBittorrent

Category: Other
Total size: 84.12 MB
Added: 8 months ago (2025-05-17 13:12:01)

Share ratio: 5 seeders, 0 leechers
Info Hash: C53A6A39C0F74A8034DCA338CBB9ABDBD6163C3B
Last updated: 22 hours ago (2026-02-03 21:05:29)

Description:

Textbook in PDF format Metamaterial is an artificially constructed material that interacts differently with light and sound waves than standard natural materials. The book gives a comprehensive overview of metamaterials and their properties and the most prevalent structural designs for microwave and terahertz frequencies. The authors introduce new coding metamaterial for specific absorption rate (SAR) reduction applications in 5G Cellular Networks. They present conventional metamaterial with unique properties, ultra-thin, wide-band and mu-negative (MNG) characteristics for terahertz frequency application. The authors explore radiation protection, spanning fundamental concepts to the latest technologies, critically analyze how metamaterials contribute to the enhancement of safety and precision in radiation therapy. They cover metamaterial absorbers, navigate the domain of coding metamaterials, emphasizing their distinctive properties and pivotal role in RCS reduction and EMI shielding