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1 national system of scientific and technical information
Универсальный англо-русский словарь > national system of scientific and technical information
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2 national system of scientific and technical information
Patent terms dictionary > national system of scientific and technical information
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3 National Scientific and Technical Information System (Cuba, SNICT)
Космонавтика: Национальная система научно-технической информации (СНИКТ)Универсальный англо-русский словарь > National Scientific and Technical Information System (Cuba, SNICT)
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4 National Scientific and Technical Information System
Универсальный англо-русский словарь > National Scientific and Technical Information System
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5 system
1) комплекс; совокупность; система2) устройство3) метод; план, проект; программа•- system of catalogs
- system of centralized indexing
- system of claim drafting
- system of classification
- system of examination
- system of granting patents
- system of headings
- system of material encouragement
- abstract information retrieval system
- alert information system
- automated design system
- binary system
- business system
- card system
- centralized system of processing
- centralized system of selective distribution
- classification system
- closed system
- communication system
- communication data system
- computing system
- computer system
- control system
- coordinate system
- database management system
- data processing
- storage and transmission system
- deferred examination system
- disk operating system
- domain name system
- examination system
- filing system
- first-to-claim system
- first-to-file system
- first-to-invent system
- forecasting system
- generalized information processing system
- German classification system
- hardware-software system
- information retrieval system
- isolable system
- keyword system
- library classification system
- man - machine system
- marking system
- mechanized retrieval system
- mechanized search system
- microfilm retrieval system
- national system of scientific and technical information
- network operating system
- patent system
- peripheral system of claim drafting
- registration system
- retrieval system
- society system
- sui generis system
- value system
- writing system -
6 system
1) система || системный3) вчт операционная система; программа-супервизор5) вчт большая программа6) метод; способ; алгоритм•system halted — "система остановлена" ( экранное сообщение об остановке компьютера при наличии серьёзной ошибки)
- CPsystem- H-system- h-system- hydrogen-air/lead battery hybrid system- Ksystem- Lsystem- L*a*b* system- master/slave computer system- p-system- y-system- Δ-system -
7 Committee
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8 Committee
в соч.- American Engineering Standards Committee
- American National Standards Institute/Standards Planning and Requirements Committee
- Anti-Submarine Detection Investigation Committee
- British Committee on Radiation Units and Measurements
- Color Television Committee
- Committee for Information and Documentation on Science and Technology
- Committee on Multimedia Technology
- Committee on Radio Frequency
- Committee on Scientific and Technical Information
- Committee on Space Research
- Coordinating Committee for Intercontinental Research Networks
- Interdepartment Radio Advisory Committee
- International Radio Consultative Committee
- International Special Committee on Radio Interference
- International Telegraph and Telephone Consultative Committee
- International Telegraph Consultative Committee
- International Telephone Consultative Committee
- Inter-Service Components Technical Committee
- National Advisory Committee for Electronics
- National Television System Committee
- Semiconductor Electronics Education Committee
- Standards Planning and Requirements Committee
- Technical Coordination Committee
- U.S. National CommitteeThe New English-Russian Dictionary of Radio-electronics > Committee
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9 office
управление; департамент; комитет; отдел; бюро; секретариат, канцелярия; разг. кабина экипажаJoint Service Cruise Missile Program [Project] office — объединенное управление разработки КР (для ВВС и ВМС)
office of Information, Navy — информационное управление ВМС
office of Research, Development and Evaluation — управление НИОКР ВМС
office of the Chief, Army Reserve — управление резерва СВ
office of the Comptroller, Navy — управление главного финансового инспектора ВМС
office of the Deputy COFS for Research, Development and Acquisition — управление заместителя НШ по НИОКР и закупкам (СВ)
office, Aerospace Research — управление воздушно-космических исследований
office, Analysis and Review — управление анализа и контроля потребностей
office, Armor Force Management and Standardization — управление по вопросам администрации и стандартизации бронетанковых войск
office, Assistant COFS for Force Development — управление ПНШ по строительству ВС
office, Assistant COFS for Intelligence — управление ПНШ по разведке
office, Assistant COFS — управление [отдел] ПНШ
office, Assistant Secretary of Defense — аппарат [секретариат] ПМО
office, Chief of Chaplains — управление начальника службы военных священников (СВ)
office, Chief of Civil Affairs — управление по связям с гражданской администрацией и населением
office, Chief of Engineers — управление начальника инженерных войск
office, Chief of Finance (and Accounting) — управление начальника финансовой службы (СВ)
office, Chief of Legislative Liaison — отдел связи с законодательными органами
office, Chief of Ordnance — управление начальника артиллерийско-технической службы (СВ)
office, Chief of R&D — управление НИОКР (СВ)
office, Chief of Transportation — управление [отдел] начальника транспортной службы
office, Chief, Chemical Corps — управление начальника химической службы
office, COFS for Operations — оперативное управление НШ
office, COFS, Army — аппарат НШ СВ
office, Consolidated Personnel — управление гражданских рабочих и служащих
office, Coordinator of Army Studies — управление координатора разработок СВ
office, Defense Transportation — управление военно-транспортной службы
office, Deputy Chief of Naval Operations, Air Warfare — управление заместителя НШ ВМС по боевому применению авиации
office, Deputy COFS for Aviation — отдел заместителя НШ по авиации (МП)
office, Deputy COFS for Installations and Logistics — управление заместителя НШ по расквартированию и тыловому обеспечению
office, Deputy COFS for Manpower — управление заместителя НШ по людским ресурсам
office, Deputy COFS for Operations and Training — управление заместителя НШ по оперативной и боевой подготовке
office, Deputy COFS for Plans and Logistics — управление заместителя НШ по планированию тылового обеспечения
office, Development and Engineering — отдел технических разработок (ЦРУ)
office, Development and Weapon Systems Analysis — управление разработки и анализа систем вооружения
office, Director of Development Planning — управление планирования строительства (ВВС)
office, Director of Foreign Intelligence — управление начальника внешней разведки
office, Distribution Services — отдел распределения и рассылки картографических изданий (МО)
office, Economic Research — отдел экономических исследований (ЦРУ)
office, Emergency Transportation — управление чрезвычайных перевозок
office, Employment Policy and Grievance Review — отдел по вопросам занятости и рассмотрению жалоб (СВ)
office, Federal Procurement Policy — управление разработки федеральной политики в области закупок
office, Force Planning and Analysis — управление планирования и анализа строительства ВС
office, General Council — управление генерального юрисконсульта
office, Geographic and Cartographic Research — отдел географических и картографических исследований (ЦРУ)
office, Imagery Analysis — отдел анализа видовой информации (ЦРУ)
office, Information and Legal Affairs — управление информации и права (МО)
office, Information for. the Armed Forces — управление информации ВС
office, JCS — аппарат КНШ
office, Judge Advocate General — управление начальника военно-юридической службы
office, Management and Budget — административно-бюджетное управление
office, Military Assistance — управление по оказанию военной помощи
office, Personnel Manager — отдел кадров (СВ)
office, Services and Information Agency — отдел управления информационного обеспечения
office, Special Assistant for Logistical Support of Army Aircraft — отдел специального помощника по вопросам МТО армейской авиации
office, Special Assistant for Logistical Support of Tactical Communications — отдел специального помощника по вопросам МТО тактических систем связи
office, the Inspector General — управление генерального инспектора
office, the Legislative Affairs — управление военного законодательства
office, Under Secretary of Navy — аппарат заместителя министра ВМС
office, Under Secretary of the Air Force — аппарат заместителя министра ВВС
Personnel, Plans and Training office — отдел по вопросам ЛС, планирования и боевой подготовки
Strategic Objectives [Targets] Planning office — управление планирования стратегических задач (КНШ)
Surveillance, Target Acquisition and Night Observation System office — управление разработки систем наблюдения, засечки целей и ПНВ
— Resources Management office -
10 program
программа; план; задача; составлять программу [план]; планировать; программировать, задавать программу (напр. ЭВМ)morale, welfare and recreation program — программа мероприятий по бытовому обеспечению, организации отдыха и развлечений
rationalization, standardization and interoperability program — программа рационализации, стандартизации и интероперабельности (оборудования)
telecommunications and C2 program — программа создания систем руководства, управления и (дальней) связи
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11 Henry, Joseph
[br]b. 17 December 1797 Albany, New York, USAd. 13 May 1878 Washington, DC, USA[br]American scientist after whom the unit of inductance is named.[br]Sent to stay with relatives at the age of 6 because of the illness of his father, when the latter died in 1811 Henry was apprenticed to a silversmith and then turned to the stage. Whilst he was ill himself, a book on science fired his interest and he began studying at Albany Academy, working as a tutor to finance his studies. Initially intending to pursue medicine, he then spent some time as a surveyor before becoming Professor of Mathematics and Natural Philosophy at Albany Academy in 1826. There he became interested in the improvement of electromagnets and discovered that the use of an increased number of turns of wire round the core greatly increased their power; by 1831 he was able to supply to Yale a magnet capable of lifting almost a ton weight. During this time he also discovered the principles of magnetic induction and self-inductance. In the same year he made, but did not patent, a cable telegraph system capable of working over a distance of 1 mile (1.6 km). It was at this time, too, that he found that adiabatic expansion of gases led to their sudden cooling, thus paving the way for the development of refrigerators. For this he was recommended for, but never received, the Copley Medal of the Royal Society. Five years later he became Professor of Natural Philosophy at New Jersey College (later Princeton University), where he deduced the laws governing the operation of transformers and observed that changes in magnetic flux induced electric currents in conductors. Later he also observed that spark discharges caused electrical effects at a distance. He therefore came close to the discovery of radio waves. In 1836 he was granted a year's leave of absence and travelled to Europe, where he was able to meet Michael Faraday. It was with his help that in 1844 Samuel Morse set up the first patented electric telegraph, but, sadly, the latter seems to have reaped all the credit and financial rewards. In 1846 he became the first secretary of the Washington Smithsonian Institute and did much to develop government support for scientific research. As a result of his efforts some 500 telegraph stations across the country were equipped with meteorological equipment to supply weather information by telegraph to a central location, a facility that eventually became the US National Weather Bureau. From 1852 he was a member of the Lighthouse Board, contributing to improvements in lighting and sound warning systems and becoming its chairman in 1871. During the Civil War he was a technical advisor to President Lincoln. He was a founder of the National Academy of Science and served as its President for eleven years.[br]Principal Honours and DistinctionsPresident, American Association for the Advancement of Science 1849. President, National Academy of Science 1893–1904. In 1893, to honour his work on induction, the International Congress of Electricians adopted the henry as the unit of inductance.Bibliography1824. "On the chemical and mechanical effects of steam". 1825. "The production of cold by the rarefaction of air".1832, "On the production of currents \& sparks of electricity \& magnetism", AmericanJournal of Science 22:403."Theory of the so-called imponderables", Proceedings of the American Association for the Advancement of Science 6:84.Further ReadingSmithsonian Institution, 1886, Joseph Henry, Scientific Writings, Washington DC.KF -
12 Shannon, Claude Elwood
[br]b. 30 April 1916 Gaylord, Michigan, USA[br]American mathematician, creator of information theory.[br]As a child, Shannon tinkered with radio kits and enjoyed solving puzzles, particularly crypto-graphic ones. He graduated from the University of Michigan in 1936 with a Bachelor of Science in mathematics and electrical engineering, and earned his Master's degree from the Massachusetts Institute of Technology (MIT) in 1937. His thesis on applying Boolean algebra to switching circuits has since been acclaimed as possibly the most significant this century. Shannon earned his PhD in mathematics from MIT in 1940 with a dissertation on the mathematics of genetic transmission.Shannon spent a year at the Institute for Advanced Study in Princeton, then in 1941 joined Bell Telephone Laboratories, where he began studying the relative efficiency of alternative transmission systems. Work on digital encryption systems during the Second World War led him to think that just as ciphers hide information from the enemy, "encoding" information could also protect it from noise. About 1948, he decided that the amount of information was best expressed quantitatively in a two-value number system, using only the digits 0 and 1. John Tukey, a Princeton colleague, named these units "binary digits" (or, for short, "bits"). Almost all digital computers and communications systems use such on-off, or two-state logic as their basis of operation.Also in the 1940s, building on the work of H. Nyquist and R.V.L. Hartley, Shannon proved that there was an upper limit to the amount of information that could be transmitted through a communications channel in a unit of time, which could be approached but never reached because real transmissions are subject to interference (noise). This was the beginning of information theory, which has been used by others in attempts to quantify many sciences and technologies, as well as subjects in the humanities, but with mixed results. Before 1970, when integrated circuits were developed, Shannon's theory was not the preferred circuit-and-transmission design tool it has since become.Shannon was also a pioneer in the field of artificial intelligence, claiming that computing machines could be used to manipulate symbols as well as do calculations. His 1953 paper on computers and automata proposed that digital computers were capable of tasks then thought exclusively the province of living organisms. In 1956 he left Bell Laboratories to join the MIT faculty as Professor of Communications Science.On the lighter side, Shannon has built many devices that play games, and in particular has made a scientific study of juggling.[br]Principal Honours and DistinctionsNational Medal of Science. Institute of Electrical and Electronics Engineers Medal of Honor, Kyoto Prize.BibliographyHis seminal paper (on what has subsequently become known as information theory) was entitled "The mathematical theory of communications", first published in Bell System Technical Journal in 1948; it is also available in a monograph (written with Warren Weaver) published by the University of Illinois Press in 1949, and in Key Papers in the Development of Information Theory, ed. David Slepian, IEEE Press, 1974, 1988. For readers who want all of Shannon's works, see N.J.A.Sloane and A.D.Wyner, 1992, TheCollected Papers of Claude E.Shannon.HO -
13 team
расчет; команда; экипаж, группа; отряд; ( рабочая) бригада; взаимодействие; см. тж. detachment, group, party, crewAlfa team (Special Forces) — команда «Альфа» (войск специального назначения)
Delta team (Special Forces) — команда «Дельта» (войск специального назначения)
Special Forces team, Atlantic Fleet — группа сил специального назначения Атлантического флота
Special Forces team, Pacific Fleet — группа сил специального назначения Тихоокеанского флота
technical assistance (field) team — (полевая) группа оказания военно-технической помощи "
underwater demolition (swimmers) team — группа [команда] боевых пловцов-подрывников
— air-ground combat team— CIA team— FA team— FAC team— gas team— medical support team— NBC team— radiation detection team— raiding team— sniper spotter-firer team* * *• команда -
14 Watson-Watt, Sir Robert Alexander
[br]b. 13 April 1892 Brechin, Angus, Scotlandd. 6 December 1973 Inverness, Scotland[br]Scottish engineer and scientific adviser known for his work on radar.[br]Following education at Brechin High School, Watson-Watt entered University College, Dundee (then a part of the University of St Andrews), obtaining a BSc in engineering in 1912. From 1912 until 1921 he was Assistant to the Professor of Natural Philosophy at St Andrews, but during the First World War he also held various posts in the Meteorological Office. During. this time, in 1916 he proposed the use of cathode ray oscillographs for radio-direction-finding displays. He joined the newly formed Radio Research Station at Slough when it was opened in 1924, and 3 years later, when it amalgamated with the Radio Section of the National Physical Laboratory, he became Superintendent at Slough. At this time he proposed the name "ionosphere" for the ionized layer in the upper atmosphere. With E.V. Appleton and J.F.Herd he developed the "squegger" hard-valve transformer-coupled timebase and with the latter devised a direction-finding radio-goniometer.In 1933 he was asked to investigate possible aircraft counter-measures. He soon showed that it was impossible to make the wished-for radio "death-ray", but had the idea of using the detection of reflected radio-waves as a means of monitoring the approach of enemy aircraft. With six assistants he developed this idea and constructed an experimental system of radar (RAdio Detection And Ranging) in which arrays of aerials were used to detect the reflected signals and deduce the bearing and height. To realize a practical system, in September 1936 he was appointed Director of the Bawdsey Research Station near Felixstowe and carried out operational studies of radar. The result was that within two years the East Coast of the British Isles was equipped with a network of radar transmitters and receivers working in the 7–14 metre band—the so-called "chain-home" system—which did so much to assist the efficient deployment of RAF Fighter Command against German bombing raids on Britain in the early years of the Second World War.In 1938 he moved to the Air Ministry as Director of Communications Development, becoming Scientific Adviser to the Air Ministry and Ministry of Aircraft Production in 1940, then Deputy Chairman of the War Cabinet Radio Board in 1943. After the war he set up Sir Robert Watson-Watt \& Partners, an industrial consultant firm. He then spent some years in relative retirement in Canada, but returned to Scotland before his death.[br]Principal Honours and DistinctionsKnighted 1942. CBE 1941. FRS 1941. US Medal of Merit 1946. Royal Society Hughes Medal 1948. Franklin Institute Elliot Cresson Medal 1957. LLD St Andrews 1943. At various times: President, Royal Meteorological Society, Institute of Navigation and Institute of Professional Civil Servants; Vice-President, American Institute of Radio Engineers.Bibliography1923, with E.V.Appleton \& J.F.Herd, British patent no. 235,254 (for the "squegger"). 1926, with J.F.Herd, "An instantaneous direction reading radio goniometer", Journal ofthe Institution of Electrical Engineers 64:611.1933, The Cathode Ray Oscillograph in Radio Research.1935, Through the Weather Hours (autobiography).1936, "Polarisation errors in direction finders", Wireless Engineer 13:3. 1958, Three Steps to Victory.1959, The Pulse of Radar.1961, Man's Means to his End.Further ReadingS.S.Swords, 1986, Technical History of the Beginnings of Radar, Stevenage: Peter Peregrinus.KFBiographical history of technology > Watson-Watt, Sir Robert Alexander
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