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Nitendar Kumar

Researcher at Solid State Physics Laboratory

Publications -  45
Citations -  320

Nitendar Kumar is an academic researcher from Solid State Physics Laboratory. The author has contributed to research in topics: Ferrite (magnet) & Microstrip. The author has an hindex of 10, co-authored 45 publications receiving 288 citations.

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Synthesis of lithium ferrite by precursor and combustion methods: A comparative study

TL;DR: In this paper, the thermal decomposition of lithium hexa(carboxylato)ferrate(III) precursors, (Li3[Fe(L)6]·xH2O, L = formate, acetate, propionate, butyrate), has been carried out in flowing air atmosphere from ambient temperature upto 500 °C.
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Study of LiTiMg-ferrite radome for the application of satellite communication

TL;DR: LiTiMg-ferrite radome is used as superstrate or radome, which controls the radiation, reception, and scattering from a printed antenna or array by applying a dc magnetic bias field in the plane of the ferrite, orthogonal to the RF magnetic field as discussed by the authors.
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In situ monitoring of electrical resistance of nanoferrite thin film irradiated by 190 MeV Au14+ ions

TL;DR: In this article, a highly resistive nanocrystalline thin film of Li0.25Mg0.5Mn0.1Fe2.15O4, deposited by RF magnetron sputtering technique on Si(1/0/0) substrate, is irradiated with 190 MeV Au14+ ions.
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Irradiation effect on dielectric properties of NiMn0.05Tix(Zn, Mg)xFe1.95−2xO4 ferrite thin films

TL;DR: In this paper, the dielectric properties of NiMn 0.05, 0.2 and 0.55 O 4 thin films were studied and the effect of fast heavy ion induced modifications on the properties of these thin films was investigated.
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Microstrip triangular patch antenna fabricated on LiTiZn ferrite substrate and tested in the X band range

TL;DR: In this paper, an experimental study of microstrip triangle patch antenna designed and fabricated on LiTiZn ferrite substrate is presented, where the antenna geometry has been optimized with IE3D and lithographed on 2.5mm thick Li TiZn polycrystalline substrate and further characterized for microwave application.