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41 MAC
1. machine-aided cognition - обучение с помощью ЭВМ, машинное обучение;2. Macintosh computer - компьютер Макинтош;3. maintenance action card - карточка операций по техобслуживанию;4. maintenance advisory committee - консультативный комитет по техническому обслуживанию;5. maintenance allocation chart - карта распределения работ по техническому обслуживанию;6. maintenance analysis center - пункт анализа работ по техническому обслуживанию;7. management advisory committee - консультативный комитет руководства;8. mandatory access control - мандатный контроль доступа;9. manual adaptive control - адаптивное управление путём ручного ввода оптимальных параметров;10. material accounting - учёт материалов;11. maximum acceptable concentration - предельно допустимая концентрация; ПДК;12. maximum admissible concentration - предельно допустимая концентрация; ПДК;13. maximum allowable concentration - предельно допустимая концентрация; ПДК;14. mean aerodynamic chord - средняя аэродинамическая хорда; САХ;15. media access control - протокол управления доступом к передающей среде; управление доступом к среде; управление доступом к средствам передачи;16. media access controller - контроллер доступа к среде;17. membrane attack complex - мембраноатакующий комплекс;18. memory access controller - контроллер доступа к памяти;19. message authentication code - код аутентификации сообщений; код сообщения с паролем;20. metal-arc cutting - дуговая резка металлическим электродом;21. microprocessor-array computer - вычислительная машина на основе матрицы микропроцессоров;22. military air command - военно-транспортное авиационное командование;23. minimal alveolar concentration - минимальная альвеолярная концентрация анестетика;24. monitor and control - контроль и управление;25. multiple access channel - канал коллективного доступа;26. multiple-access computer - ЭВМ коллективного пользования; ЭВМ с параллельным доступом;27. multiplexed analog component - временное уплотнение аналоговых составляющих;28. multiplier-accumulator - умножитель-накопитель;29. multiply and accumulate - умножение с накоплением -
42 выполнение расчёта в обратном порядке
Выполнение расчёта в обратном порядке-- It may also be possible to deduce the aerodynamic phase lags within an operating fan by working the analysis backwards.Русско-английский научно-технический словарь переводчика > выполнение расчёта в обратном порядке
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43 амплитудно-частотная характеристика
1. amplitude characteristic2. frequency response, amplitude responseанодная характеристика — anode characteristic; plate characteristic
анодно-сеточная характеристика — mutual characteristic ; transfer characteristic
переходная характеристика; реакция на скачок — step response
Русско-английский большой базовый словарь > амплитудно-частотная характеристика
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44 Griffith, Alan Arnold
[br]b. 13 June 1893 London, Englandd. 13 October 1963 Farnborough, England[br]English research engineer responsible for many original ideas, including jet-lift aircraft.[br]Griffith was very much a "boffin", for he was a quiet, thoughtful man who shunned public appearances, yet he produced many revolutionary ideas. During the First World War he worked at the Royal Aircraft Factory, Farnborough, where he carried out research into structural analysis. Because of his use of soap films in solving torsion problems, he was nicknamed "Soap-bubble".During the 1920s Griffith carried out research into gas-turbine design at the Royal Aircraft Establishment (RAE; as the Royal Aircraft Factory had become). In 1929 he made proposals for a gas turbine driving a propeller (a turboprop), but the idea was shelved. In the 1930s he was head of the Engine Department of the RAE and developed multi-stage axial compressors, which were later used in jet engines. This work attracted the attention of E.W. (later Lord) Hives of Rolls-Royce who persuaded Griffith to join Rolls-Royce in 1939. His first major project was a "contra-flow" jet engine, which was a good idea but a practical failure. However, Griffith's axial-flow compressor experience played an important part in the success of Rolls-Royce jet engines from the Avon onwards. He also proposed the bypass principle used for the Conway.Griffith experimented with suction to control the boundary layer on wings, but his main interest in the 1950s centred on vertical-take-off and -landing aircraft. He developed the remarkable "flying bedstead", which consisted of a framework (the bedstead) in which two jet engines were mounted with their jets pointing downwards, thus lifting the machine vertically. It first flew in 1954 and provided much valuable data. The Short SC1 aircraft followed, with four small jets providing lift for vertical take-off and one conventional jet to provide forward propulsion. This flew successfully in the late 1950s and early 1960s. Griffith proposed an airliner with lifting engines, but the weight of the lifting engines when not in use would have been a serious handicap. He retired in 1960.[br]Principal Honours and DistinctionsCBE 1948. FRS 1941. Royal Aeronautical Society Silver Medal 1955; Blériot Medal 1962.BibliographyGriffith produced many technical papers in his early days; for example: 1926, Aerodynamic Theory of Turbine Design, Farnborough.Further ReadingD.Eyre, 1966, "Dr A.A.Griffith, CBE, FRS", Journal of the Royal Aeronautical Society (June) (a detailed obituary).F.W.Armstrong, 1976, "The aero engine and its progress: fifty years after Griffith", Aeronautical Journal (December).O.Stewart, 1966, Aviation: The Creative Ideas, London (provides brief descriptions of Griffith's many projects).JDS
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