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Influence of (FeO+TiO2) abundance on the microwave thermal emissions of lunar regolith on the microwave thermal emissions (MTE) of the lunar regolith is the abundance of FeO and TiO2, known as the (Fe

Influence of (FeO+TiO2) abundance on the microwave thermal emissions of lunar regolith on the microwave thermal emissions (MTE) of the lunar regolith is the abundance of FeO and TiO2, known as the (Fe

Microwave simulation experiments on regolith (Lunar dust) deposition on stainless steel the surface of laboratory regolith whose composition and particle size distribution imitate the dust

Influence of (FeO+TiO2) abundance on the microwave thermal emissions of lunar regolith on the microwave thermal emissions (MTE) of the lunar regolith is the abundance of FeO and TiO2, known as the (Fe

Influence of (FeO+TiO2) abundance on the microwave thermal emissions of lunar regolith on the microwave thermal emissions (MTE) of the lunar regolith is the abundance of FeO and TiO2, known as the (Fe

Non-Gaussian distribution of regolith particles deposited on tantalum and molybdenum surfaces under gyrotron pulsed radiationThe distribution of regolith simulant particles deposited on the surface of tantalum and molybdenum

Development of Biomining Technology using Aspergillus Niger: Application to the Lunar Programlunar regolith

Microwave Discharge Experiments on Samples of a Meteorite Substance and Lunar Regolith Simulants for Plasma-Dust Cloud ModellingMicrowave Discharge Experiments on Samples of a Meteorite Substance and Lunar Regolith Simulants

ПОДГОТОВКА ПОВЕРХНОСТИ МЕТАЛЛОВ ПРЯМЫМ ПЬЕЗОЭЛЕКТРИЧЕСКИМ РАЗРЯДОМ ДЛЯ МИКРОВОЛНОВЫХ ИМИТАЦИОННЫХ ИСПЫТАНИЙ С ЛУННОЙ ПЫЛЬЮ with regolith is considered. Half of the samples of each metal were treated with low temperature plasma. A

Obtaining Plasma–Dust Clouds from Meteoritic Matter, its Analogs and Simulants of Lunar Regolith Using Microwave Discharge simulant of lunar regolith LMS-1D and ilmenite concentrate using a microwave discharge in powder media

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