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1Baker, Jr RML. High-Frequency Gravitational Wave research and application to exoplanet studies. Kosm. nauka tehnol. 2017 ;23(3):47-63.
1Kotov Yu.D, 1Yurov VN, 1Arkhangelsky AI, 1Bessonov MV, 1Buslov AS, 1Vlasik KF, 1Glianenko AS, 1Kadilin VV, 1Lupar EE, 1Rubtsov IV, et al. The high-energy radiation spectrometer natalya-2m. initial switching on, testing the operation and tuning in the orbit of the satellite CORONAS-PHOTON. Kosm. nauka tehnol. 2010 ;16(2):58-64.
1Shuvalov VA, 2Kochubey GS, 2Priymak AI, 2Pismenniy NI. High-altitude spacecraft power losses of solar arrays as a result of interaction with environment. Kosm. nauka tehnol. 2004 ;10(4):039-049.
1Kaydash VG, 2Shkuratov Yu.G, 1Korokhin VV. High resolution space photometry as a method to reveal structure anomalies of the lunar surface. Kosm. nauka tehnol. 2015 ;21(5):75–89.
1Aizenberg Ya.E, 2Bataev VA, 2Kuzmin AI. High accuracy stabilization system of launch vehicle with asymmetric configuration when one engine failure is possible. Kosm. nauka tehnol. 1998 ;4(1):64–67.
1Kostrov LS, 1Rozumenko VT, 2Chernogor LF. HF doppler observations of disturbances in geospace, which accompanied space vehicle launches. Kosm. nauka tehnol. 2003 ;9(Supplement2):076-081.
1Bondarenko SI, 1Melenevsky Yu.A, 1Rusanov KV, 1Scherbakova NS. «HERUBIM» Experiment Space-borne cryogenic facility to study the liquid helium phenomena under microgravm and the relevant experimental program. Kosm. nauka tehnol. 2000 ;6(4):134-135.
1Kostyk RI, 1Keselman IG, 1Osypov SN, 2Lebediev NI, 2Oraevskyi VN, 2Zhugzhda YD, 2Kopaiev IM. Helioseismological CORONAS—DIFOS experiment. Kosm. nauka tehnol. 1996 ;2(1):34–40.
1Lizunov GV, 1Leontiev AYu. Height of the penetration into the ionosphere for internal atmosphere gravity waves. Kosm. nauka tehnol. 2014 ;20(4):31-41.
1Grachev EA, 1Grigoryan OP, 2Kudela K, 3Petrov AN, 3Sheveleva VN. Height distribution of electron fluxes with energies above 40 keV at mid-latitudes. Kosm. nauka tehnol. 2002 ;8(Supplement2):055-064.

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