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Simulation of electromagnetic field distribution in the measuring cell for determining the dielectric permittivity of materials at microwave frequenciesTo determine the dielectric permittivity of materials in a wide frequency range with the automation

Влияние параметров микрорельефа поверхности конструкций электромагнитных экранов на основе фольгированных материалов на значения их коэффициентов отражения и передачи and transmission coefficients values in frequency range 0.7…17 GHz are presented. The practical utilization

Experimental Substantiation of The Possibility of Hydrolytic Lignin Using in the Architectural Electromagnetic Shielding Systems with the electrolyte water solution, at different temperatures of this material. The research is aimed

Advanced Layered Flexible Radio-Absorbing Materials Based on Powdered Charcoal coefficient are –11.5, –20.0, and –15.5 dB respectively. The investigated materials seem to be promising

Многослойные композиционные плазменные покрытия на элементах экранной защиты на основе диоксида цирконияMaterial utilization coefficient

THE POSSIBILITY OF UTILIZATION OF SLAG AND FLY ASH, GENERATED DURING THE THERMAL PROCESSING OF MUNICIPAL SOLID WASTE (MSW)THE POSSIBILITY OF UTILIZATION OF SLAG AND FLY ASH, GENERATED DURING THE THERMAL PROCESSING

Исследование коэффициентов передачи и отражения электромагнитного излучения порошковых материалов на основе электрокорунда of powder materials based on electrocorund in frequency range 0.7…17 GHz are presented.

On the size effects in fullerite nanoparticles. The intermolecular potential derived by Verheijen et al. is utilized. Anharmonic terms up to the fourth order

Size dependences of the lattice parameter and thermal expansion coefficient of C60 fullerite nanoparticles. The intermolecular potential derived by Girifalco is utilized. We have considered three highly symmetrical forms

Increasing the Efficiency of Energy Generation at Krasnoyarsk CHP-2 by Utilization of Waste HeatIncreasing the Efficiency of Energy Generation at Krasnoyarsk CHP-2 by Utilization of Waste Heat

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