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2015
1Belousov KG, 2Vaisero MV, 1Kavun VV, 2Masley VN, 1Moskalev SI, 3Shovkoplias Yu.A. Conception of the open-frame platform for space experiments. Kosm. nauka tehnol. 2015 ;21(6):20–27.
1Alpatov AP, 2Bombardelli C, 3Khoroshylov SV. Conceptions of the active space debris. Kosm. nauka tehnol. 2015 ;21(6):56–61.
1Zhalilo AA, 2Yemets AI, 3Bessonov EA, 4Ditskiy IV, 5Zanimonskiy Ye.M. Construction and validation of the regional model of ionospheric total electron content using dual-frequency carrier-phase observations of networks of permanent GNSS-stations. Kosm. nauka tehnol. 2015 ;21(6):28–48.
1Stanislavsky AA, 1Konovalenko AA, 1Zakharenko VV, 1Bubnov IN, 1Volvach Ya.S, 1Dorovskyy VV, 1Koval AA, 1Mylostna KYu. Coordinated synchronous observations of Solar System objects using the ground- and space-based methods of low-frequency radio astronomy. Kosm. nauka tehnol. 2015 ;21(4):51–55.
1Yakubovskyi DA, 1Savchenko DO, 2Busko TO. Creation of the X-ray sky maps and their application for a search of the dark matter decay line. Kosm. nauka tehnol. 2015 ;21(5):90–93.
1Shuvalov VA, 1Tokmak NA, 2Reznichenko NP. Degradation of spacecraftpolymer films on long exposure to atomic oxygen flows and vacuum ultraviolet radiation. Kosm. nauka tehnol. 2015 ;21(5):57–68.
1Lutsenko IV, 1Popov DO, 2Laush AG, 3Yatsenko VO, 4Zhalilo OO, 5Ditskiy IV, 6Bessonov EA. Determination of orientation, coordinates, relative position and movement parameters of objects in space with the GNSS technology. Kosm. nauka tehnol. 2015 ;21(2):40–46.
1Gladky EG. Determination of the hazardous zones in the impact areas of separated parts of launch vehicles under the uncertain altitude of their initial destruction. Kosm. nauka tehnol. 2015 ;21(6):49–55.
1Lobanov LM, 2Volkov VS. Development and investigation of transformable-volume structures for space applications. Kosm. nauka tehnol. 2015 ;21(4):32–38.
1Makarenko AA, 1Mashchenko AN, 2Shevtsov EI. The development of modern means of spacecraft integration with a launch vehicle. Kosm. nauka tehnol. 2015 ;21(5):18–23.

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