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    Academic Journal

    Subject Geographic: USPU

    Relation: Политическая лингвистика. 2021. № 4 (88)

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    Academic Journal

    Source: Scientific and Technical Libraries; № 12 (2024); 52-63 ; Научные и технические библиотеки; № 12 (2024); 52-63 ; 2686-8601 ; 1027-3689

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    Relation: https://ntb.gpntb.ru/jour/article/view/1427/1048; Гачева А. Г. Русский космизм в идеях и лицах. Москва : Академический проект, 2019. 450 с.; Гачева А. Г. ХХ Международные научные чтения памяти Н. Ф. Фёдорова: пролог к 200-летию философа в 2029 году // Библиотековедение. 2023. Т. 72. № 6. С. 521–532.; Вернадский В. И. Научная мысль как планетное явление. Москва : Наука, 1991. 270 с.; Мелентьева Ю. П. Чтение как фактор преобразования мира (в контексте теории ноосферы В. И. Вернадского) // Библиография. 2017. № 5. С. 77–81.; Иванов Вяч. Вс. Интеллигенция как проводник в ноосферу // Русская интеллигенция. История и судьба. Москва : Наука, 2001. С. 44–63.; Мелентьева Ю. П. Энергия чтения // Чтение. Энциклопедический словарь / под ред. чл.-корр. РАО Ю. П. Мелентьевой. Москва : Федеральное государственное бюджетное учреждение науки Научный и издательский центр «Наука» Российской академии наук, 2021. С. 423–424.; Лютер М. 95 тезисов, прибитых к воротам Виттенбергской церкви 31 окт. 1517 г. URL: https://diletant.media/articles/35519789/ (дата обращения: 07.2024).; Жильмон Ж. Ф. Реформация и чтение // История чтения в западном мире от Античности до наших дней. Москва : ФАИР, 2008. С. 276–296.; Ю. К. Бегунов. История Руси в пяти томах. I том. С древнейших времен до Олега Вещего. Санкт-Петербург : Политехника, 2007. 602 с.; Самарин А. Ю. Читатель в России во второй половине XVIII в. (по спискам подписчиков). Москва : Изд-во МГУП, 2000. 287 с.; Колоницкий Б. Какую роль сыграли книги и чтение в русской революции // Сайт «Горький-медиа», 15 июня 2020. URL: https://gorky.media/context/kakuyu-rol-sygraliknigi-i-chtenie-v-russkojrevolyutsii/?fbclid=IwAR2M8beuSfcAsKW1_6iFJsgjOTznOyYq0cXKUvGzshXBsltDiABVD3-JVUg (дата обращения: 7.03.2024).; Троцкий Л. Д. Литература и Революция. Москва : АСТ, 2023. 512 с.; Мазурицкий А. М. Как спасали книги в годы Великой Отечественной войны: рассказы о забытых героях // Научные и технические библиотеки. 2017. № 12. С. 109–122.; Лютов С. Н. Книжный фронт Великой Отечественной войны. Новосибирск, 2021. 170 с.; Бутенко И. Массовое чтение времен оттепели и перестройки // Библиотекарь. 1991. № 5. С. 11–13.; Рейтблат А. И., Воловельская Т. П., Трофимова В. Б. Социологические исследования чтения в России : Аннотированный указатель литературы (1986–2001 годы) // Библиотечное дело – XXI век : науч.-практ. сб.: прил. к журн. «Библиотековедение». Москва, 2004. № 1 (7). С. 244–268.; Сапунов Б. В. Книга и читатель на Руси в ХVII в. // Книга в России до середины ХIХ в. Ленинград : Наука, 1978. С. 61–74.; Луппов С. П. Книга в России в послепетровское время. 1725–1740. Ленинград : Наука, 1976. 79 с.; История русского читателя : сборник статей / [ред.-сост.: П. Н. Базанов, В. В. Головин]. Санкт-Петербург : Санкт-Петербургский гос. ун-т культуры и искусств, 2010. Вып. 5. 2010. 247 с.; Топоров А. М. Крестьяне о писателе: опыт, методика и образцы крестьянской критики современной художественной литературы: с портретами крестьян-критиков. Москва: Гос. изд-во; Ленинград : [б. и.], 1930. 280 с.; Сухомлинский В. А. Сердце отдаю детям. Москва : Концептуал, 2016. 312 с.; Мелентьева Ю. П. Итоги и перспективы изучения проблем чтения // Книга. Исследования и материалы. Москва : Наука, 2014. Сборник 100. С. 39–45.; Лодыгина П. А., Фирсов В. Р. Организация научных исследований в библиотеках: постановка проблемы // Библиотековедение. 2023. № 72 (6). С. 561–572.; https://ntb.gpntb.ru/jour/article/view/1427

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    Academic Journal

    Contributors: The work was carried out with the financial support of the Russian Science Foundation № 22-27-00266 “Development of a mathematical model of glaciation with subsequent application for describing subglacial hydrological processes in the area of sub-glacial Lake Vostok, Eastern Antarctica”, Работа выполнена при финансовой поддержке Российского научного фонда № 22-27-00266 «Разработка математической модели развития ледникового покрова с последующим применением для описания субгляциальных гидрологических процессов в районе подледникового озера Восток, Восточная Антарктида»

    Source: Arctic and Antarctic Research; Том 70, № 4 (2024): Специальный выпуск Исследования подледникового озера Восток; 460-476 ; Проблемы Арктики и Антарктики; Том 70, № 4 (2024): Специальный выпуск Исследования подледникового озера Восток; 460-476 ; 2618-6713 ; 0555-2648

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    Relation: https://www.aaresearch.science/jour/article/view/665/304; Ridley J.K., Cudlip W., Laxon S.W. Identification of subglacial lakes using ERS-1 radar altimeter. Journal of Glaciology 1993;39(133):625–634. https://doi.org/10.3189/S002214300001652X; Kapitza A.P., Ridley J.K., Robin G.d.Q., Siegert M.J., Zotikov I.A. A large deep freshwater lake beneath the ice of central East Antarctica. Nature. 1996;381(6584):684–686. https://doi.org/10.1038/381684a0; Lukin V.V. A way to Lake Vostok studies is now open. Problemy Arktiki i Antarktiki = Arctic and Antarctic Research. 2012;1(91):5–19. (In Russ.); Zotikov I.A. Thermal regime of the glacier of Central Antarctica. Antarctica. Commission reports. 1961. Moscow: Nauka; 1962. P. 27–40. (In Russ.); Zotikov I.A. Bottom melting in the central zone of the ice shield on the Antarctic continent and its influence upon the present balance of the ice mass. Hydrological Sciences Journal. 1963;8(1):36–44.; Zotikov I.A. About temperatures in the glacier of Antarctica. Antarctic. 1963; 61–105. (In Russ.); Robin G.Q. Ice movement and temperature distribution in glaciers and ice sheets. Journal of Glaciology. 1955; 2(18):523–532.; Robin G.Q., Swithinbank C.W.M., Smith B.M.E. Radio echo exploration of the Antarctic ice sheet. In: Gow A.J., Keeler C., Langway C.C., Weeks W.F. (eds.) International Symposium on Antarctic Glaciological Exploration (ISAGE), Hanover, New Hampshire, 3–7 September 1968. Gentbrugge; International Association of Scientific Hydrology; 1968. P. 97–115.; Livingstone S.J., Li Y., Rutishauser A., Sanderson R.J., Winter K., Mikucki J.A., Björnsson H., Bowling J.S., Boiling J.S., Chu W., Dow C.F., Fricker H.A., McMillan M., Ng F., Ross N., Siegert M., Siegfried M., Sole A.J. Subglacial lakes and their changing role in a warming climate. Nature Reviews Earth and Environment. 2022;3(2):106–124.; Popov S.V., Masolov V.N., Lukin V.V., Popkov A.M. National seismic, radar and seismological studies of subglacial Lake Vostok. Ice and Snow. 2012;52(4):31–38. https://doi.org/10.15356/2076-6734-2012-4-31-38; Kapitsa A.P. New data on the thickness of the Central Antarctic ice sheet. Information Bulletin of the Soviet Antarctic Expedition. 1960;19:10–15. (In Russ.); Kapitsa A.P. The relief of the ice sheet and subglacial bed of Antarctica. Information Bulletin of the Soviet Antarctic Expedition. 1966;58:5–12. (In Russ.); Kapitsa A.P., Sorokhtin O.G. Measurements of the thickness of the ice sheet during the hike along the route Vostok — Molodyozhnaya. Information Bulletin of the Soviet Antarctic Expedition. 1965;51: 19–23. (In Russ.); Robin G.Q., Drewry D.J., Meldrum D.T. International studies of ice sheet and bedrock. Philosophical Transactions of the Royal Society of London. B, Biological Sciences. 1977;279(963):185–196.; Popov S.V. Six decades of radar and seismic research in Antarctica. Ice and Snow. 2021;61(4):587– 619. (In Russ.). https://doi.org/10.31857/S2076673421040110; Popov S. Fifty-five years of Russian radio-echo sounding investigations in Antarctica. Annals of Glaciology. 2020;61(81):14–24. https://doi.org/10.1017/aog.2020.4; Averyanov V.G. Ten years of Vostok Station. Information Bulletin of the Soviet Antarctic Expedition. 1968;69:5–8. (In Russ.); Vasiliev N.I., Talalay P.G., Bobin N.E., Chistyakov V.K., Zubkov V.M., Krasilev A.V., Dmitriev A.N., Yankilevich S.V., Lipenkov V.Y. Deep drilling at Vostok station, Antarctica: history and recent events. Annals of Glaciology. 2007;47:10–23. https://doi.org/10.3189/172756407786857776; Lipenkov V. Ya, Barkov N.I., Salamatin A.N. The history of climate and glaciation of Antarctica based on the results of studying the ice core from Vostok Station. Reports of the Academy of Sciences. 2000;72:197–236. (In Russ.); Leitchenkov G.L., Bialiatsky B.V., Popkov А.М., Popov S.V. Geological nature of the subglacial Lake Vostok in East Antarctica. Materialy Glyatsiologicheskikh Issledovaniy = Data of Glaciological Studies. 2005;98:81–91. (In Russ.); Liebert J., Leonhardt G. Astronomical observations to determine the movement of the ice sheet in the area of Vostok station. Information Bulletin of the Soviet Antarctic Expedition. 1974;88:68–70. (In Russ.); Richter A., Fedorov D.V., Fritsche M., Popov S.V., Lipenkov V. Ya., Ekaykin A.A., Lukin V.V., Matveev A.Yu., Grebnev V.P., Rosenau R., Dietrich R. Ice flow velocities over Vostok Subglacial Lake, East Antarctica, determined by 10 years of GNSS observations. Journal of Glaciology. 2013;59(214):315–326. https://doi.org/10.3189/2013JoG12J056; Lipenkov V.Y., Ekaykin A.A., Polyakova E.V., Raynaud D. Characterization of subglacial Lake Vostok as seen from physical and isotope properties of accreted ice. Philosophical Transactions of the Royal Society A. 2016;374:20140303. https://doi.org/10.1098/rsta.2014.0303; Leitchenkov G.L., Antonov A.V., Luneov P.I., Lipenkov V.Y. Geology and environments of subglacial Lake Vostok. Philosophical Transactions of the Royal Society A. 2016;374(2059):20140302. https://doi.org/10.1098/rsta.2014.0302; Tabacco I.E., Bianchi C., Zirizzotti A., Zuccheretti E., Forieri A., Della Vedova A. Airborne radar survey above Vostok region, east Antarctica: ice thickness and VSL geometry. Journal of Glaciology. 2002;48(160):62–69. https://doi.org/10.3189/172756502781831656; Cui X., Jeofry H., Greenbaum J.S., Guo J., Li L., Lindzey L.E., Habbal F.A., Wei W., Young D.A., Ross N., Morlighem M., Jong L.M., Roberts J.L., Blankenship D., Sun B., Siegert M. Bed topography of princess Elizabeth land in East Antarctica. Earth System Science Data. 2020;12(4):2765–2774. https://doi.org/10.5194/essd-12-2765-2020; Cui X. Greenbaum J., Lang S., Zhao X., Li L., Guo J., Sun B. The Scientific operations of Snow Eagle 601 in Antarctica in the past five austral seasons. Remote Sensing. 2020;12(18):2994. https:// doi.org/10.3390/rs12182994; Cui X., Lang S., Guo J., Sun B. Detecting and searching for subglacial lakes through airborne radio-echo sounding in Princess Elizabeth Land (PEL), Antarctica. E3S Web Conf. 2020;163:04002. https://doi.org/10.1051/e3sconf/202016304002; Studinger M., Karner G.D., Bell R., Levin V., Raymond C.A., Tikku A.A. Geophysical models for the tectonic frameworks of the Lake Vostok region, East Antarctica. Earth and Planetary Science Letters. 2003;216:663–677. https://doi.org/10.1016/S0012-821X(03)00548-X; Studinger M., Bell R., Karner G.D., Tikku A.A., Holt J.W., Morse D.L., Richter T.G., Kempf S.D., Peters M.E., Blankenship D.D., Sweeney R.E., Rystrom V.L. Ice cover, landscape setting and geological framework of Lake Vostok, East Antarctica. Earth and Planetary Science Letters. 2003;205:195–210.; Mandrikova D.V., Lipenkov V.Ya., Popov S.V. The structure of the ice sheet in the region of Lake Vostok (East Antarctica) according to radar profiling data. Materialy Glyatsiologicheskikh Issledovaniy = Data of Glaciological Studies. 2005;98:65–72. (In Russ.); Tikku A.A., Bell R.E., Studinger M., Clarke G.K.C. Ice flow field over Lake Vostok, East Antarctica inferred by structure tracking. Earth and Planetary Science Letters. 2004;227:249–261. https://doi.org/10.1016/j.epsl.2004.09.021; Masolov V.N., Popov S.V., Lukin V.V., Popkov A.M. The bottom topography and subglacial Lake Vostok water body, East Antarctica. Doklady Earth Sciences. 2010;433(2):1092–1097.; Smith B.E., Fricker H.A., Joughin I.R., Tulaczyk S. An inventory of active subglacial lakes in Antarctica detected by ICESat (2003–2008). Journal of Glaciology. 2009;55(192):573–595. https://doi.org/10.3189/002214309789470879; Popov S.V., Lunev P.I. Orography of the bedrock relief of subglacial Lake Vostok and its vicinity (East Antarctic). Geomorfologiya. 2012;1:81–92. (In Russ.); Leychenkov G.I., Popkov A.M. Predicted sedimentary section of subglacial Lake Vostok. Ice and Snow. 2012;52(4):21–30. (In Russ.). https://doi.org/10.15356/2076-6734-2012-4-21-30; Isanina E.V., Krupnova N.A., Popov S.V., Masolov V.N., Lukin V.V. Deep structure of the Vostok Basin, East Antarctica as deduced from seismological observations. Geotectonics. 2009;43(3):221– 225. https://doi.org/10.1134/S0016852109030042; Bulat S.A., Alekhina I.A., Blot M., Petit J.-R., de Angelis M., Wagenbach D., Lipenkov V.Ya., Vasilyeva L.P., Wloch D.M., Raynaud D. DNA signature of thermophilic bacteria from the aged accretion ice of Lake Vostok, Antarctica: implications for searching for life in extreme icy environments. International Journal of Astrobiology. 2004;3(1):1–12. https://doi.org/10.1017/S1473550404001879; Lavire C., Normand P., Alekhina I., Bulat S., Prieur D., Birrien J.L., Fournier P., Hanni C., Petit J.-R. Presence of Hydrogenophilus thermoluteolus DNA in accretion ice in the subglacial Lake Vostok, Antarctica, assessed using rrs, cbb and hox. Environmental Microbiology. 2006;8(12):2106–2114. https://doi.org/10.1111/j.1462-2920.2006.01087.x; Wendt J., Dietrich R., Fritsche M., Wendt A., Yuskevich A., Kokhanov A., Senatorov A., Lukin V., Shibuya K., Doi K. Geodetic observations of ice flow velocities over the southern part of subglacial Lake Vostok, Antarctica, and their glaciological implications. Geophysical Journal International. 2006;166(3):991–998. https://doi.org/10.1111/j.1365-246X.2006.03061.x; Wendt A., Dietrich R., Wendt J., Fritsche M., Lukin V., Yuskevich A., Kokhanov A., Senatorov A., Lukin V., Shibuya K., Doi K. The response of the subglacial Lake Vostok, Antarctica, to tidal and atmospheric pressure forcing. Geophysical Journal International. 2005;161(1):41–49. https://doi.org/10.1111/j.1365-246X.2005.02575.x; Richter A., Popov S.V., Dietrich R., Lukin V.V., Fritsche M., Lipenkov V.Y., Matveev A.Y., Wendt J., Yuskevich A.V., Masolov V.N. Observational evidence on the stability of the hydroglaciological regime of subglacial Lake Vostok. Geophysical Research Letters 2008;35(11): L11502. https://doi.org/10.1029/2008GL033397; Richter A., Popov S.V., Schröder L., Schwabe J., Ewert H., Scheinert M., Horwath M., Dietrich R. Subglacial Lake Vostok not expected to discharge water. Geophysical Research Letters. 2014;41:1–7. https://doi.org/10.1002/2014GL061433; Gray L., Joughin I., Tulaczyk S., Spikes V.B., Bindschadler R. Jezek K. Evidence for subglacial water transport in the West Antarctic Ice Sheet through three-dimensional satellite radar interferometry. Geophysical Research Letters. 2005;32(3):1–4. https://doi.org/10.1029/2004GL021387; Wingham D.J., Siegert M.J., Shepherd A., Muir A.S. Rapid discharge connects Antarctic subglacial lakes. Nature. 2006;440(7087):1033–1036. https://doi.org/10.1038/nature04660; Wüest A., Carmack E. A priori estimates of mixing and circulation in the hard-to-reach water body of Lake Vostok. Ocean Modelling. 2000;2(1–2):29–43. https://doi.org/10.1016/s14635003(00)00007-x; Williams M.J.M.Application of a three-dimensional numerical model to Lake Vostok:AnAntarctic subglacial lake. Geophysical Research Letters. 2001;28(3):531–534. https://doi.org/10.1029/2000GL012107; Fernando H.J., Smith D. Vortex structures in geophysical convection. European Journal of Mechanics-B/Fluids/. 2001;20(4):437–470. https://doi.org/10.1016/S0997-7546(01)01129-3; Wells M.G., Wettlaufer J.S. Circulation in Lake Vostok: a laboratory analogue study. Geophysical Research Letters. 2008;35(3):L03501. https://doi.org/10.1029/2007GL032162; Petit J.R. Geophysical, geochemical, glaciological and energy balance model constraints to the Lake Vostok. Data of Glaciological Studies. 2005;97:91–100.; Thoma M., Grosfeld K. Mayer C. Modelling mixing and circulation in subglacial Lake Vostok, Antarctica. Ocean Dynamics. 2007;57(6):531–540. https://doi.org/10.1007/s10236-007-0110-9; Thoma M., Mayer C., Grosfeld K. Sensitivity of subglacial Lake Vostok’s flow regime on environmental parameters. Earth and Planetary Science Letters. 2008;269(1–2):242–247. https://doi.org/10.1016/j.epsl.2008.02.023; Determann J., Gerdes R. Melting and freezing beneath ice shelves: implications from a three-dimensional ocean-circulation model. Annals of Glaciology. 1994;20:413–419. https://doi.org/10.1017/s0260305500016785; Williams M.J.M., Warner R.C., Budd W.F. The effects of ocean warming on melting and ocean circulation under the Amery Ice Shelf, East Antarctica. Annals of Glaciology. 1998;27:75–80. https://doi.org/10.3189/1998AoG27-1-75-80; Gerdes R., Determann J., Grosfeld K. Ocean circulation beneath Filchner‐Ronne Ice Shelf from three‐dimensional model results. Journal of Geophysical Research: Oceans. 1999;104(C7): 15827–15842.; Walsh D. A note on eastern-boundary intensification of flow in Lake Vostok. Ocean Modelling. 2002;4(2):207–218. https://doi.org/10.1016/S1463-5003(01)00018-X; Thoma M., Grosfeld K., Mayer C., Pattyn F. Interaction between ice sheet dynamics and subglacial lake circulation: A coupled modelling approach. Cryosphere. 2010;4(1):1–12. https://doi.org/10.5194/tc-4-1-2010; Kazko G.V. On the modelling of subglacial Lake Vostok circulation (Central Antarctica). Problems of Arctic and Antarctic = Arctic and Antarctic Research. 2009;81(1):138–145. (In Russ.); Kazko G.V., Savatyugin L.M., Sokratova I.N. Modeling of water circulation in the antarctic subglacial Lake Vostok. Ice and Snow. 2012;52(4):86–91. (In Russ.). https://doi.org/10.15356/2076-6734-2012-4-86-91; Kazko G.V. Estimates of some parameters of lake Vostok circulation, found with a two-dimensional nonhydrostatic model. Physics of vibrations. 2001;9(3):182–188.; Mayer C., Grosfeld K., Siegert M.J. Salinity impact on water flow and lake ice in Lake Vostok, Antarctica. Geophysical Research Letters. 2003;30(14):1767. https://doi.org/10.1029/2003GL017380; Filina I.Y., Blankenship D.D., Thoma M., Lukin V. V., Masolov V. N., Sen M.K. New 3D bathymetry and sediment distribution in Lake Vostok: Implication for pre-glacial origin and numerical modeling of the internal processes within the lake. Earth and Planetary Science Letters. 2008;276(1):106–114. https://doi.org/10.1016/j.epsl.2008.09.012; Kwok R., Siegert M.J., Carsey F.D. Ice motion over lake Vostok, Antarctica: Constraints on inferences regarding the accreted ice. Journal of Glaciology. 2000;46(155):689–694. https://doi.org/10.3189/172756500781832710; Mayer C., Siegert M.J. Numerical modelling of ice-sheet dynamics across the Vostok subglacial lake, central East Antarctica. Journal of Glaciology. 2000;46(153):197–205. https://doi.org/10.3189/172756500781832981; Pattyn F. A new three-dimensional higher-order thermomechanical ice sheet model: Basic sensitivity, ice stream development, and ice flow across subglacial lakes. Journal of Geophysical Research: Solid Earth. 2003;108(B8):1–15. https://doi.org/10.1029/2002jb002329; Pattyn F. Investigating the stability of subglacial lakes with a full Stokes ice-sheet model. Journal of Glaciology. 2008;54(185):353–361. https://doi.org/10.3189/002214308784886171; Pattyn F., de Smedt B. Souchez R. Influence of subglacial Vostok lake on the regional ice dynamics of the Antarctic ice sheet: A model study. Journal of Glaciology. 2004;50(171):583– 589. https://doi.org/10.3189/172756504781829765; Couston L.-A., Siegert M. Dynamic flows create potentially habitable conditions in Antarctic subglacial lakes. Science Advanced. 2021;7(8):eabc3972.; Zotikov I.A., Duxbury N.S. On an genesis of the Vostok Lake (Antarctica). Reports of the Academy of Sciences. 2000;374(6):824–826. (In Russ.); Vasiliev N.I., Leitchenkov G.L., Zagrivny E.A. Prospects of obtaining samples of bottom sediments from subglacial lake Vostok. Journal of Mining Institute. 2017;224:199–208. (In Russ.). https://doi.org/10.18454/PMI.2017.2.199; https://www.aaresearch.science/jour/article/view/665

  6. 6
    Academic Journal

    Source: Известия Томского политехнического университета
    Bulletin of the Tomsk Polytechnic University

    File Description: application/pdf

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    Academic Journal

    Authors: Zlobina, O. N.

    Subject Terms: ТОРЖЕСТВЕННЫЕ РЕЧИ, POLITICAL RHETORIC, RUSSIAN LANGUAGE, СТРАТЕГИИ ПЕРЕВОДА, ПРЕЗИДЕНТСКАЯ РИТОРИКА, РЕЧЕВАЯ ДЕЯТЕЛЬНОСТЬ, ЛИНГВИСТИКА ТЕКСТА, POLITICAL DISCOURSE, КАЧЕСТВО ПЕРЕВОДА, ПЕРЕВОДОВЕДЕНИЕ, КОМПЛЕКСНЫЕ ИССЛЕДОВАНИЯ, СТИЛИСТИКА, TRANSLATION STRATEGIES, ИНАУГУРАЦИИ, РУССКИЙ ЯЗЫК, ТОРЖЕСТВЕННЫЕ ЦЕРЕМОНИИ, ПОЛИТИЧЕСКИЕ ТЕКСТЫ, ГОСУДАРСТВЕННАЯ ВЛАСТЬ, БАЙДЕН ДЖОЗЕФ, СОЕДИНЕННЫЕ ШТАТЫ АМЕРИКИ, ПЕРЕВОДЧЕСКАЯ ДЕЯТЕЛЬНОСТЬ, КОММУНИКАТИВНЫЕ СИТУАЦИИ, АМЕРИКАНСКИЕ ПРЕЗИДЕНТЫ, ПЕРЕВОДЧИКИ, ДИСКУРС-АНАЛИЗ, INAUGURAL SPEECHES, ПРЕЗИДЕНТСКИЙ ДИСКУРС, США, ПЕРЕВОДЧЕСКИЕ СТРАТЕГИИ, ENGLISH LANGUAGE, РЕЧЕВЫЕ ЖАНРЫ, ЯЗЫКОВАЯ ЛИЧНОСТЬ, ЯЗЫКОВЫЕ СРЕДСТВА, ИНАУГУРАЦИОННЫЕ РЕЧИ, МЕТОДЫ ПЕРЕВОДА, TARGET LANGUAGE, COMMUNICATIVE INTENTION, AMERICAN POLITICIANS, ПОЛИТИЧЕСКИЙ ДИСКУРС, ПОЛИТИЧЕСКИЕ РЕЧИ, ПОЛИТИЧЕСКИЕ ВЫСТУПЛЕНИЯ, ЛИНГВОПЕРСОНОЛОГИЯ, АНГЛИЙСКИЙ ЯЗЫК, SPEECH GENRES, КОММУНИКАТИВНЫЕ СОБЫТИЯ, ЯЗЫК ПЕРЕВОДА, РЕЧЕВОЕ ПОВЕДЕНИЕ, ВСТУПЛЕНИЕ В ДОЛЖНОСТЬ, ПОЛИТИЧЕСКАЯ РИТОРИКА, УСТНАЯ РЕЧЬ, ПОЛИТИЧЕСКИЕ ДЕЯТЕЛИ, ЯЗЫКОЗНАНИЕ

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    Academic Journal

    Source: Donetsk archaeological collection; No. 16; 108-113 ; Донецький археологічний збірник; № 16; 108-113 ; 2218-2284

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