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Authors:
Bychanok, Dmitry S. |
Padrez, Y. |
Liubetski, N. |
Arlouski, A. |
Kushniarou, U. |
Korobov, I. |
Halimski, I. |
Kulahava, T. |
Demidenko, Marina |
Urbanowicz, A. |
Macutkevic, Jan |
Kuzhir, Polina P.
Source: Journal of applied physics. 2022. Vol. 131, № 2. P. 025110-1-025110-7
Type: статьи в журналах
Date: 2022
Description:
We demonstrate that commercially available window tinting films could be used multifunctionally, i.e., for electromagnetic shielding and absorption at frequencies below 1 THz along with visible light
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Source: Journal of chemical physics. 2019. Vol. 150, № 18. P. 184303-1-184303-11
Type: статьи в журналах
Date: 2019
Description:
Reliable ozone spectral data consistent over several spectral ranges are a challenge for both experiment and theory. We present ab initio calculations for strong lines that lead to consistent results
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Type: диссертации
Date: 2019
Source: Key engineering materials. 2018. Vol. 781. P. 36-40
Type: статьи в журналах
Date: 2018
Description:
In this study, Co0,7Zn1,3W powders were synthesized and investigated at the microwave region. The solid-state reaction method and self-propagating high-temperature synthesis were used to production of
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Source: Carbon. 2018. Vol. 129. P. 688-694
Type: статьи в журналах
Date: 2018
Description:
Screening effect in finite-length carbon nanotubes (CNT) and their agglomerates hinders significantly the electromagnetic interaction in composite materials. Screening effect is strong in the microwav
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Source: Russian physics journal. 2017. Vol. 59, № 10. P. 1703-1709
Type: статьи в журналах
Date: 2017
Description:
The possibility is shown of a directional change of the dielectric permittivity of carbon foam promising for the use in shielding devices in the microwave frequency range. The frequency dependences of
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Source: Ferroelectrics. 2015. Vol. 479. P. 119-126
Type: статьи в журналах
Date: 2015
Description:
Dielectric analysis of tannin-based carbon foams with different pore sizes, produced at different densities, was carried out in wide microwave frequency range (8 GHz – 35 GHz). Both dielectric permitt
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Source: СВЧ-техника и телекоммуникационные технологии : 25-я Международная Крымская конференция (КрыМиКо'2015), 6-12 сентября 2015 г., Севастополь, Крым, Россия : материалы конференции : в 2 т.. М. [и др.], 2015. Т. 1. С. 894-895
Type: статьи в сборниках
Date: 2015