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1 mechanical time train
1) Военный термин: взрывная цепь с механическим замедлением2) Техника: огневая цепь с механическим замедлением -
2 mechanical time train
n вогневий ланцюг з механічним уповільненнямEnglish-Ukrainian military dictionary > mechanical time train
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3 взрывная цепь с механическим замедлением
Military: mechanical time trainУниверсальный русско-английский словарь > взрывная цепь с механическим замедлением
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4 огневая цепь с механическим замедлением
Engineering: mechanical time trainУниверсальный русско-английский словарь > огневая цепь с механическим замедлением
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5 Gresley, Sir Herbert Nigel
[br]b. 19 June 1876 Edinburgh, Scotlandd. 5 April 1941 Hertford, England[br]English mechanical engineer, designer of the A4-class 4–6–2 locomotive holding the world speed record for steam traction.[br]Gresley was the son of the Rector of Netherseale, Derbyshire; he was educated at Marlborough and by the age of 13 was skilled at making sketches of locomotives. In 1893 he became a pupil of F.W. Webb at Crewe works, London \& North Western Railway, and in 1898 he moved to Horwich works, Lancashire \& Yorkshire Railway, to gain drawing-office experience under J.A.F.Aspinall, subsequently becoming Foreman of the locomotive running sheds at Blackpool. In 1900 he transferred to the carriage and wagon department, and in 1904 he had risen to become its Assistant Superintendent. In 1905 he moved to the Great Northern Railway, becoming Superintendent of its carriage and wagon department at Doncaster under H.A. Ivatt. In 1906 he designed and produced a bogie luggage van with steel underframe, teak body, elliptical roof, bowed ends and buckeye couplings: this became the prototype for East Coast main-line coaches built over the next thirty-five years. In 1911 Gresley succeeded Ivatt as Locomotive, Carriage \& Wagon Superintendent. His first locomotive was a mixed-traffic 2–6–0, his next a 2–8–0 for freight. From 1915 he worked on the design of a 4–6–2 locomotive for express passenger traffic: as with Ivatt's 4 4 2s, the trailing axle would allow the wide firebox needed for Yorkshire coal. He also devised a means by which two sets of valve gear could operate the valves on a three-cylinder locomotive and applied it for the first time on a 2–8–0 built in 1918. The system was complex, but a later simplified form was used on all subsequent Gresley three-cylinder locomotives, including his first 4–6–2 which appeared in 1922. In 1921, Gresley introduced the first British restaurant car with electric cooking facilities.With the grouping of 1923, the Great Northern Railway was absorbed into the London \& North Eastern Railway and Gresley was appointed Chief Mechanical Engineer. More 4–6– 2s were built, the first British class of such wheel arrangement. Modifications to their valve gear, along lines developed by G.J. Churchward, reduced their coal consumption sufficiently to enable them to run non-stop between London and Edinburgh. So that enginemen might change over en route, some of the locomotives were equipped with corridor tenders from 1928. The design was steadily improved in detail, and by comparison an experimental 4–6–4 with a watertube boiler that Gresley produced in 1929 showed no overall benefit. A successful high-powered 2–8–2 was built in 1934, following the introduction of third-class sleeping cars, to haul 500-ton passenger trains between Edinburgh and Aberdeen.In 1932 the need to meet increasing road competition had resulted in the end of a long-standing agreement between East Coast and West Coast railways, that train journeys between London and Edinburgh by either route should be scheduled to take 8 1/4 hours. Seeking to accelerate train services, Gresley studied high-speed, diesel-electric railcars in Germany and petrol-electric railcars in France. He considered them for the London \& North Eastern Railway, but a test run by a train hauled by one of his 4–6–2s in 1934, which reached 108 mph (174 km/h), suggested that a steam train could better the railcar proposals while its accommodation would be more comfortable. To celebrate the Silver Jubilee of King George V, a high-speed, streamlined train between London and Newcastle upon Tyne was proposed, the first such train in Britain. An improved 4–6–2, the A4 class, was designed with modifications to ensure free running and an ample reserve of power up hill. Its streamlined outline included a wedge-shaped front which reduced wind resistance and helped to lift the exhaust dear of the cab windows at speed. The first locomotive of the class, named Silver Link, ran at an average speed of 100 mph (161 km/h) for 43 miles (69 km), with a maximum speed of 112 1/2 mph (181 km/h), on a seven-coach test train on 27 September 1935: the locomotive went into service hauling the Silver Jubilee express single-handed (since others of the class had still to be completed) for the first three weeks, a round trip of 536 miles (863 km) daily, much of it at 90 mph (145 km/h), without any mechanical troubles at all. Coaches for the Silver Jubilee had teak-framed, steel-panelled bodies on all-steel, welded underframes; windows were double glazed; and there was a pressure ventilation/heating system. Comparable trains were introduced between London Kings Cross and Edinburgh in 1937 and to Leeds in 1938.Gresley did not hesitate to incorporate outstanding features from elsewhere into his locomotive designs and was well aware of the work of André Chapelon in France. Four A4s built in 1938 were equipped with Kylchap twin blast-pipes and double chimneys to improve performance still further. The first of these to be completed, no. 4468, Mallard, on 3 July 1938 ran a test train at over 120 mph (193 km/h) for 2 miles (3.2 km) and momentarily achieved 126 mph (203 km/h), the world speed record for steam traction. J.Duddington was the driver and T.Bray the fireman. The use of high-speed trains came to an end with the Second World War. The A4s were then demonstrated to be powerful as well as fast: one was noted hauling a 730-ton, 22-coach train at an average speed exceeding 75 mph (120 km/h) over 30 miles (48 km). The war also halted electrification of the Manchester-Sheffield line, on the 1,500 volt DC overhead system; however, anticipating eventual resumption, Gresley had a prototype main-line Bo-Bo electric locomotive built in 1941. Sadly, Gresley died from a heart attack while still in office.[br]Principal Honours and DistinctionsKnighted 1936. President, Institution of Locomotive Engineers 1927 and 1934. President, Institution of Mechanical Engineers 1936.Further ReadingF.A.S.Brown, 1961, Nigel Gresley, Locomotive Engineer, Ian Allan (full-length biography).John Bellwood and David Jenkinson, Gresley and Stanier. A Centenary Tribute (a good comparative account).See also: Bulleid, Oliver Vaughan SnellPJGRBiographical history of technology > Gresley, Sir Herbert Nigel
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6 device
1) устройство2) установка; агрегат3) аппарат4) механизм5) прибор; измерительное устройство7) компонент; элемент8) схема•devices identical in design — конструктивные аналоги;-
alphanumeric display device-
automatic exposure control device-
bubble memory device-
bucket brigade charge-coupled device-
decision-making device-
drilling bit feed device-
electrical device-
exposure control device-
Gunn-effect device-
Hall-effect device-
hard-copy output device-
household electrical device-
humidity detecting device-
hybrid-type device-
Josephson-effect device-
maneuvering propulsion device-
materials-handling device-
multiport device-
night observation device-
noise dampening device-
photoconducting device-
propulsion device-
protection device-
raster-display device-
registering pin device-
reversible film feeding device-
seed-feeding device-
supply reel braking device-
three-axis device -
7 system
система; установка; устройство; ркт. комплекс"see to land" system — система посадки с визуальным приземлением
A.S.I. system — система указателя воздушной скорости
ablating heat-protection system — аблирующая [абляционная] система тепловой защиты
ablating heat-shield system — аблирующая [абляционная] система тепловой защиты
active attitude control system — ксм. активная система ориентации
aft-end rocket ignition system — система воспламенения заряда с задней части РДТТ [со стороны сопла]
aircraft response sensing system — система измерений параметров, характеризующих поведение ЛА
air-inlet bypass door system — дв. система перепуска воздуха на входе
antiaircraft guided missile system — ракетная система ПВО; зенитный ракетный комплекс
antiaircraft guided weapons system — ракетная система ПВО; зенитный ракетный комплекс
attenuated intercept satellite rendez-vous system — система безударного соединения спутников на орбите
attitude and azimuth reference system — система измерения или индикации углов тангажа, крена и азимута
automatic departure prevention system — система автоматического предотвращения сваливания или вращения после сваливания
automatic drift kick-off system — система автоматического устранения угла упреждения сноса (перед приземлением)
automatic hovering control system — верт. система автостабилизации на висении
automatic indicating feathering system — автоматическая система флюгирования с индикацией отказа (двигателя)
automatic mixture-ratio control system — система автоматического регулирования состава (топливной) смеси
automatic pitch control system — автомат тангажа; автоматическая система продольного управления [управления по каналу тангажа]
B.L.C. high-lift system — система управления пограничным слоем для повышения подъёмной силы (крыла)
backpack life support system — ксм. ранцевая система жизнеобеспечения
beam-rider (control, guidance) system — ркт. система наведения по лучу
biowaste electric propulsion system — электрический двигатель, работающий на биологических отходах
buddy (refueling, tank) system — (подвесная) автономная система дозаправки топливом в полете
closed(-circuit, -cycle) system — замкнутая система, система с замкнутым контуром или циклом; система с обратной связью
Cooper-Harper pilot rating system — система баллов оценки ЛА лётчиком по Куперу — Харперу
deployable aerodynamic deceleration system — развёртываемая (в атмосфере) аэродинамическая тормозная система
depressurize the fuel system — стравливать избыточное давление (воздуха, газа) в топливной системе
driver gas heating system — аэрд. система подогрева толкающего газа
dry sump (lubrication) system — дв. система смазки с сухим картером [отстойником]
electrically powered hydraulic system — электронасосная гидросистема (в отличие от гидросистемы с насосами, приводимыми от двигателя)
exponential control flare system — система выравнивания с экспоненциальным управлением (перед приземлением)
flywheel attitude control system — ксм. инерционная система ориентации
gas-ejection attitude control system — ксм. газоструйная система ориентация
gas-jet attitude control system — ксм. газоструйная система ориентация
ground proximity extraction system — система извлечения грузов из самолёта, пролетающего на уровне земли
hot-air balloon water recovery system — система спасения путем посадки на воду с помощью баллонов, наполняемых горячими газами
hypersonic air data entry system — система для оценки аэродинамики тела, входящего в атмосферу планеты с гиперзвуковой скоростью
igh-temperature fatigue test system — установка для испытаний на выносливость при высоких температурах
interceptor (directing, vectoring) system — система наведения перехватчиков
ion electrical propulsion system — ксм. ионная двигательная установка
isotope-heated catalytic oxidizer system — система каталитического окислителя с нагревом от изотопного источника
jet vane actuation system — ркт. система привода газового руля
laminar flow pumping system — система насосов [компрессоров] для ламинаризации обтекания
launching range safety system — система безопасности ракетного полигона; система обеспечения безопасности космодрома
leading edge slat system — система выдвижных [отклоняемых] предкрылков
low-altitude parachute extraction system — система беспосадочного десантирования грузов с малых высот с использованием вытяжных парашютов
magnetic attitude control system — ксм. магнитная система ориентации
magnetically slaved compass system — курсовая система с магнитной коррекцией, гироиндукционная курсовая система
mass-expulsion attitude control system — система ориентации за счёт истечения массы (газа, жидкости)
mass-motion attitude control system — ксм. система ориентации за счёт перемещения масс
mass-shifting attitude control system — ксм. система ориентации за счёт перемещения масс
monopropellant rocket propulsion system — двигательная установка с ЖРД на унитарном [однокомпонентном] топливе
nucleonic propellant gauging and utilization system — система измерения и регулирования подачи топлива с использованием радиоактивных изотопов
open(-circuit, -cycle) system — открытая [незамкнутая] система, система с незамкнутым контуром или циклом; система без обратной связи
plenum chamber burning system — дв. система сжигания топлива во втором контуре
positioning system for the landing gear — система регулирования высоты шасси (при стоянке самолёта на земле)
radar altimeter low-altitude control system — система управления на малых высотах с использованием радиовысотомера
radar system for unmanned cooperative rendezvous in space — радиолокационная система для обеспечения встречи (на орбите) беспилотных кооперируемых КЛА
range and orbit determination system — система определения дальностей [расстояний] и орбит
real-time telemetry processing system — система обработки радиотелеметрических данных в реальном масштабе времени
recuperative cycle regenerable carbon dioxide removal system — система удаления углекислого газа с регенерацией поглотителя, работающая по рекуперативному циклу
rendezvous beacon and command system — маячно-командная система обеспечения встречи («а орбите)
satellite automatic terminal rendezvous and coupling system — автоматическая система сближения и стыковки спутников на орбите
Schuler tuned inertial navigation system — система инерциальной навигации на принципе маятника Шулера
sodium superoxide carbon dioxide removal system — система удаления углекислого газа с помощью надперекиси натрия
space shuttle separation system — система разделения ступеней челночного воздушно-космического аппарата
stellar-monitored astroinertial navigation guidance system — астроинерциальная система навигации и управления с астрокоррекцией
terminal control landing system — система управления посадкой по траектории, связанной с выбранной точкой приземления
terminal descent control system — ксм. система управления на конечном этапе спуска [снижения]
terminal guidance system for a satellite rendezvous — система управления на конечном участке траектории встречи спутников
test cell flow system — ркт. система питания (двигателя) топливом в огневом боксе
vectored thrust (propulsion) system — силовая установка с подъёмно-маршевым двигателем [двигателями]
water to oxygen system — ксм. система добывания кислорода из воды
wind tunnel data acquisition system — система регистрации (и обработки) данных при испытаниях в аэродинамической трубе
— D system -
8 Hamilton, Harold Lee (Hal)
[br]b. 14 June 1890 Little Shasta, California, USAd. 3 May 1969 California, USA[br]American pioneer of diesel rail traction.[br]Orphaned as a child, Hamilton went to work for Southern Pacific Railroad in his teens, and then worked for several other companies. In his spare time he learned mathematics and physics from a retired professor. In 1911 he joined the White Motor Company, makers of road motor vehicles in Denver, Colorado, where he had gone to recuperate from malaria. He remained there until 1922, apart from an eighteenth-month break for war service.Upon his return from war service, Hamilton found White selling petrol-engined railbuses with mechanical transmission, based on road vehicles, to railways. He noted that they were not robust enough and that the success of petrol railcars with electric transmission, built by General Electric since 1906, was limited as they were complex to drive and maintain. In 1922 Hamilton formed, and became President of, the Electro- Motive Engineering Corporation (later Electro-Motive Corporation) to design and produce petrol-electric rail cars. Needing an engine larger than those used in road vehicles, yet lighter and faster than marine engines, he approached the Win ton Engine Company to develop a suitable engine; in addition, General Electric provided electric transmission with a simplified control system. Using these components, Hamilton arranged for his petrol-electric railcars to be built by the St Louis Car Company, with the first being completed in 1924. It was the beginning of a highly successful series. Fuel costs were lower than for steam trains and initial costs were kept down by using standardized vehicles instead of designing for individual railways. Maintenance costs were minimized because Electro-Motive kept stocks of spare parts and supplied replacement units when necessary. As more powerful, 800 hp (600 kW) railcars were produced, railways tended to use them to haul trailer vehicles, although that practice reduced the fuel saving. By the end of the decade Electro-Motive needed engines more powerful still and therefore had to use cheap fuel. Diesel engines of the period, such as those that Winton had made for some years, were too heavy in relation to their power, and too slow and sluggish for rail use. Their fuel-injection system was erratic and insufficiently robust and Hamilton concluded that a separate injector was needed for each cylinder.In 1930 Electro-Motive Corporation and Winton were acquired by General Motors in pursuance of their aim to develop a diesel engine suitable for rail traction, with the use of unit fuel injectors; Hamilton retained his position as President. At this time, industrial depression had combined with road and air competition to undermine railway-passenger business, and Ralph Budd, President of the Chicago, Burlington \& Quincy Railroad, thought that traffic could be recovered by way of high-speed, luxury motor trains; hence the Pioneer Zephyr was built for the Burlington. This comprised a 600 hp (450 kW), lightweight, two-stroke, diesel engine developed by General Motors (model 201 A), with electric transmission, that powered a streamlined train of three articulated coaches. This train demonstrated its powers on 26 May 1934 by running non-stop from Denver to Chicago, a distance of 1,015 miles (1,635 km), in 13 hours and 6 minutes, when the fastest steam schedule was 26 hours. Hamilton and Budd were among those on board the train, and it ushered in an era of high-speed diesel trains in the USA. By then Hamilton, with General Motors backing, was planning to use the lightweight engine to power diesel-electric locomotives. Their layout was derived not from steam locomotives, but from the standard American boxcar. The power plant was mounted within the body and powered the bogies, and driver's cabs were at each end. Two 900 hp (670 kW) engines were mounted in a single car to become an 1,800 hp (l,340 kW) locomotive, which could be operated in multiple by a single driver to form a 3,600 hp (2,680 kW) locomotive. To keep costs down, standard locomotives could be mass-produced rather than needing individual designs for each railway, as with steam locomotives. Two units of this type were completed in 1935 and sent on trial throughout much of the USA. They were able to match steam locomotive performance, with considerable economies: fuel costs alone were halved and there was much less wear on the track. In the same year, Electro-Motive began manufacturing diesel-electrie locomotives at La Grange, Illinois, with design modifications: the driver was placed high up above a projecting nose, which improved visibility and provided protection in the event of collision on unguarded level crossings; six-wheeled bogies were introduced, to reduce axle loading and improve stability. The first production passenger locomotives emerged from La Grange in 1937, and by early 1939 seventy units were in service. Meanwhile, improved engines had been developed and were being made at La Grange, and late in 1939 a prototype, four-unit, 5,400 hp (4,000 kW) diesel-electric locomotive for freight trains was produced and sent out on test from coast to coast; production versions appeared late in 1940. After an interval from 1941 to 1943, when Electro-Motive produced diesel engines for military and naval use, locomotive production resumed in quantity in 1944, and within a few years diesel power replaced steam on most railways in the USA.Hal Hamilton remained President of Electro-Motive Corporation until 1942, when it became a division of General Motors, of which he became Vice-President.[br]Further ReadingP.M.Reck, 1948, On Time: The History of the Electro-Motive Division of General Motors Corporation, La Grange, Ill.: General Motors (describes Hamilton's career).PJGRBiographical history of technology > Hamilton, Harold Lee (Hal)
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9 Churchward, George Jackson
[br]b. 31 January 1857 Stoke Gabriel, Devon, Englandd. 19 December 1933 Swindon, Wiltshire, England[br]English mechanical engineer who developed for the Great Western Railway a range of steam locomotives of the most advanced design of its time.[br]Churchward was articled to the Locomotive Superintendent of the South Devon Railway in 1873, and when the South Devon was absorbed by the Great Western Railway in 1876 he moved to the latter's Swindon works. There he rose by successive promotions to become Works Manager in 1896, and in 1897 Chief Assistant to William Dean, who was Locomotive Carriage and Wagon Superintendent, in which capacity Churchward was allowed extensive freedom of action. Churchward eventually succeeded Dean in 1902: his title changed to Chief Mechanical Engineer in 1916.In locomotive design, Churchward adopted the flat-topped firebox invented by A.J.Belpaire of the Belgian State Railways and added a tapered barrel to improve circulation of water between the barrel and the firebox legs. He designed valves with a longer stroke and a greater lap than usual, to achieve full opening to exhaust. Passenger-train weights had been increasing rapidly, and Churchward produced his first 4–6– 0 express locomotive in 1902. However, he was still developing the details—he had a flair for selecting good engineering practices—and to aid his development work Churchward installed at Swindon in 1904 a stationary testing plant for locomotives. This was the first of its kind in Britain and was based on the work of Professor W.F.M.Goss, who had installed the first such plant at Purdue University, USA, in 1891. For comparison with his own locomotives Churchward obtained from France three 4–4–2 compound locomotives of the type developed by A. de Glehn and G. du Bousquet. He decided against compounding, but he did perpetuate many of the details of the French locomotives, notably the divided drive between the first and second pairs of driving wheels, when he introduced his four-cylinder 4–6–0 (the Star class) in 1907. He built a lone 4–6–2, the Great Bear, in 1908: the wheel arrangement enabled it to have a wide firebox, but the type was not perpetuated because Welsh coal suited narrow grates and 4–6–0 locomotives were adequate for the traffic. After Churchward retired in 1921 his successor, C.B.Collett, was to enlarge the Star class into the Castle class and then the King class, both 4–6–0s, which lasted almost as long as steam locomotives survived in service. In Church ward's time, however, the Great Western Railway was the first in Britain to adopt six-coupled locomotives on a large scale for passenger trains in place of four-coupled locomotives. The 4–6–0 classes, however, were but the most celebrated of a whole range of standard locomotives of advanced design for all types of traffic and shared between them many standardized components, particularly boilers, cylinders and valve gear.[br]Further ReadingH.C.B.Rogers, 1975, G.J.Churchward. A Locomotive Biography, London: George Allen \& Unwin (a full-length account of Churchward and his locomotives, and their influence on subsequent locomotive development).C.Hamilton Ellis, 1958, Twenty Locomotive Men, Shepperton: Ian Allan, Ch. 20 (a good brief account).Sir William Stanier, 1955, "George Jackson Churchward", Transactions of the NewcomenSociety 30 (a unique insight into Churchward and his work, from the informed viewpoint of his former subordinate who had risen to become Chief Mechanical Engineer of the London, Midland \& Scottish Railway).PJGRBiographical history of technology > Churchward, George Jackson
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10 control
1) управление; регулирование; регулировка || управлять; регулировать; задавать2) контроль; проверка || контролировать; проверять3) орган управления; орган регулировки, регулятор; орган настройки4) устройство управления; блок управления6) рукоятка или рычаг управления7) профилактические мероприятия, надзор•"operation is under control" — всё предусмотрено для нормальной работы;to gain control — вчт. получать управление:to go out of control — становиться неуправляемым;to operate ( to handle) the flight controls — оперировать органами управления полётом;to pass control — вчт. передавать управление;to return control — вчт. возвращать управление;to take over control — брать управление на себя;to transfer control — вчт. передавать управление-
cascaded control-
cathode control-
CO/O2 combustion control-
communications control-
computer control-
contactor-type control-
continuous-path control-
course gage control-
current-mode control-
dispatcher control-
focusing control-
holding control-
horizontal-frequency control-
hue range control-
long-distance control-
managerial control-
microprogramming control-
numerical program control-
on-off action control-
position-based control-
slide control-
step-by-step control-
time-pattern control -
11 MTS
1) Компьютерная техника: Memory Tracking System2) Ботаника: Moisture Transport System3) Военный термин: MARS technical service, Man-Transportable SOCRATES, Marine Tactical System, Masked Target Sensor, Mechanical Testing And Simulation, Message Telecommunications Service, Mission Teams Specialist, Modernization Through Spares, Moored Training Ship, Motor Transport Service, Multi Tank Syndrome, maintenance training set, maneuverable target simulator, manpower training services, master test station, material test specification, mechanical transport school, message traffic study, message transmission system, microwave test set, military test satellite, military training standard, military transportation section, missile test set, missile test stand, missile test station, missile tracking system, missile training squadron, missile tube supply, mobile tracking station, mobile tracking system, mobile training set, moving target screen, moving target simulator, multiple target screen, Maritime Tactical Schools (NATO)4) Техника: MTS system, magnetic tape station, main turbine system, memory test system, message telephone service5) Шутливое выражение: Make Transactions Slower, Mon The Scots, Murder The Sheriff6) Религия: Ministry Training Strategy7) Железнодорожный термин: Multi Train System8) Бухгалтерия: Money Transactions System9) Автомобильный термин: Multi-terrain Select (система помощи при движении по бездорожью)10) Биржевой термин: Mediocre Trading System11) Телекоммуникации: Message Telephone System, Message Transfer System12) Сокращение: Managerial Training System (at W. F. Bolger Management Academy and others), Marine Technological Society, Maritime Tactical School, Marked Target Seeker, Merlin Training System (UK Royal Navy), Message Transport System (Internet), Military Tactical Systems, Modular Tactical Switch, Movement Tracking System, Multiple Target Surveillance, magnetic tape system, Message Toll Service, Mud To Surface13) Университет: Math Technology And Science, Math Technology Science, Medium Technical School, Ministerial Training School14) Физика: Momentum Throttle Slide, Muffin Tin Surface15) Электроника: Material Tracking Standard, Medium Temperature System, Modular Time System, Multi Touch Switch16) Вычислительная техника: Moscow Time Standard-3:00, Message Transfer System (MHS), Microsoft Transaction Server (MS, DB, WSH, COM), Michigan Terminal System (OS), Magnetic Tape System (OS, HP, HP 2100), (запоминающее) устройство на магнитной ленте, microsoft transaction server17) Нефть: восходящий поток бурового раствора (mud to surface)18) Картография: mountains19) Транспорт: Mobil - Trac System20) Фирменный знак: Manitoba Telephone Services, Microsoft Technical Support22) Деловая лексика: Made To Stock23) Сетевые технологии: Multi Threaded Server, message tool service, message transfer service, служба передачи сообщений24) ЕБРР: medium term scenario25) Автоматика: make-to-stock, material transportation system26) Океанография: Marine Technology Society27) Химическое оружие: Mustard Temperature-Conditioning System28) Расширение файла: Message Transfer Service/System, Michigan Terminal System, Moscow Time Standard (+3:00), Microsoft Transaction Server (Microsoft)29) Теория: (Mahalanobis - Taguchi Startegy) Стратегия Махаланобиса - Тагучи30) Нефть и газ: Morse taper shank31) Майкрософт: система передачи сообщений32) Общественная организация: Maryland Temperance Society, Michigan Thoracic Society33) Должность: Member Of Technical Staff34) Правительство: Montgomery Transitional Services35) NYSE. Montgomery Street Income Securities, Inc.36) НАСА: Mission Team Specialist, Mission Training School37) Программное обеспечение: Millenium Theatre System38) Единицы измерений: Metric Ton Of Styrofoam -
12 MtS
1) Компьютерная техника: Memory Tracking System2) Ботаника: Moisture Transport System3) Военный термин: MARS technical service, Man-Transportable SOCRATES, Marine Tactical System, Masked Target Sensor, Mechanical Testing And Simulation, Message Telecommunications Service, Mission Teams Specialist, Modernization Through Spares, Moored Training Ship, Motor Transport Service, Multi Tank Syndrome, maintenance training set, maneuverable target simulator, manpower training services, master test station, material test specification, mechanical transport school, message traffic study, message transmission system, microwave test set, military test satellite, military training standard, military transportation section, missile test set, missile test stand, missile test station, missile tracking system, missile training squadron, missile tube supply, mobile tracking station, mobile tracking system, mobile training set, moving target screen, moving target simulator, multiple target screen, Maritime Tactical Schools (NATO)4) Техника: MTS system, magnetic tape station, main turbine system, memory test system, message telephone service5) Шутливое выражение: Make Transactions Slower, Mon The Scots, Murder The Sheriff6) Религия: Ministry Training Strategy7) Железнодорожный термин: Multi Train System8) Бухгалтерия: Money Transactions System9) Автомобильный термин: Multi-terrain Select (система помощи при движении по бездорожью)10) Биржевой термин: Mediocre Trading System11) Телекоммуникации: Message Telephone System, Message Transfer System12) Сокращение: Managerial Training System (at W. F. Bolger Management Academy and others), Marine Technological Society, Maritime Tactical School, Marked Target Seeker, Merlin Training System (UK Royal Navy), Message Transport System (Internet), Military Tactical Systems, Modular Tactical Switch, Movement Tracking System, Multiple Target Surveillance, magnetic tape system, Message Toll Service, Mud To Surface13) Университет: Math Technology And Science, Math Technology Science, Medium Technical School, Ministerial Training School14) Физика: Momentum Throttle Slide, Muffin Tin Surface15) Электроника: Material Tracking Standard, Medium Temperature System, Modular Time System, Multi Touch Switch16) Вычислительная техника: Moscow Time Standard-3:00, Message Transfer System (MHS), Microsoft Transaction Server (MS, DB, WSH, COM), Michigan Terminal System (OS), Magnetic Tape System (OS, HP, HP 2100), (запоминающее) устройство на магнитной ленте, microsoft transaction server17) Нефть: восходящий поток бурового раствора (mud to surface)18) Картография: mountains19) Транспорт: Mobil - Trac System20) Фирменный знак: Manitoba Telephone Services, Microsoft Technical Support22) Деловая лексика: Made To Stock23) Сетевые технологии: Multi Threaded Server, message tool service, message transfer service, служба передачи сообщений24) ЕБРР: medium term scenario25) Автоматика: make-to-stock, material transportation system26) Океанография: Marine Technology Society27) Химическое оружие: Mustard Temperature-Conditioning System28) Расширение файла: Message Transfer Service/System, Michigan Terminal System, Moscow Time Standard (+3:00), Microsoft Transaction Server (Microsoft)29) Теория: (Mahalanobis - Taguchi Startegy) Стратегия Махаланобиса - Тагучи30) Нефть и газ: Morse taper shank31) Майкрософт: система передачи сообщений32) Общественная организация: Maryland Temperance Society, Michigan Thoracic Society33) Должность: Member Of Technical Staff34) Правительство: Montgomery Transitional Services35) NYSE. Montgomery Street Income Securities, Inc.36) НАСА: Mission Team Specialist, Mission Training School37) Программное обеспечение: Millenium Theatre System38) Единицы измерений: Metric Ton Of Styrofoam -
13 Stephenson, George
[br]b. 9 June 1781 Wylam, Northumberland, Englandd. 12 August 1848 Tapton House, Chesterfield, England[br]English engineer, "the father of railways".[br]George Stephenson was the son of the fireman of the pumping engine at Wylam colliery, and horses drew wagons of coal along the wooden rails of the Wylam wagonway past the house in which he was born and spent his earliest childhood. While still a child he worked as a cowherd, but soon moved to working at coal pits. At 17 years of age he showed sufficient mechanical talent to be placed in charge of a new pumping engine, and had already achieved a job more responsible than that of his father. Despite his position he was still illiterate, although he subsequently learned to read and write. He was largely self-educated.In 1801 he was appointed Brakesman of the winding engine at Black Callerton pit, with responsibility for lowering the miners safely to their work. Then, about two years later, he became Brakesman of a new winding engine erected by Robert Hawthorn at Willington Quay on the Tyne. Returning collier brigs discharged ballast into wagons and the engine drew the wagons up an inclined plane to the top of "Ballast Hill" for their contents to be tipped; this was one of the earliest applications of steam power to transport, other than experimentally.In 1804 Stephenson moved to West Moor pit, Killingworth, again as Brakesman. In 1811 he demonstrated his mechanical skill by successfully modifying a new and unsatisfactory atmospheric engine, a task that had defeated the efforts of others, to enable it to pump a drowned pit clear of water. The following year he was appointed Enginewright at Killingworth, in charge of the machinery in all the collieries of the "Grand Allies", the prominent coal-owning families of Wortley, Liddell and Bowes, with authorization also to work for others. He built many stationary engines and he closely examined locomotives of John Blenkinsop's type on the Kenton \& Coxlodge wagonway, as well as those of William Hedley at Wylam.It was in 1813 that Sir Thomas Liddell requested George Stephenson to build a steam locomotive for the Killingworth wagonway: Blucher made its first trial run on 25 July 1814 and was based on Blenkinsop's locomotives, although it lacked their rack-and-pinion drive. George Stephenson is credited with building the first locomotive both to run on edge rails and be driven by adhesion, an arrangement that has been the conventional one ever since. Yet Blucher was far from perfect and over the next few years, while other engineers ignored the steam locomotive, Stephenson built a succession of them, each an improvement on the last.During this period many lives were lost in coalmines from explosions of gas ignited by miners' lamps. By observation and experiment (sometimes at great personal risk) Stephenson invented a satisfactory safety lamp, working independently of the noted scientist Sir Humphry Davy who also invented such a lamp around the same time.In 1817 George Stephenson designed his first locomotive for an outside customer, the Kilmarnock \& Troon Railway, and in 1819 he laid out the Hetton Colliery Railway in County Durham, for which his brother Robert was Resident Engineer. This was the first railway to be worked entirely without animal traction: it used inclined planes with stationary engines, self-acting inclined planes powered by gravity, and locomotives.On 19 April 1821 Stephenson was introduced to Edward Pease, one of the main promoters of the Stockton \& Darlington Railway (S \& DR), which by coincidence received its Act of Parliament the same day. George Stephenson carried out a further survey, to improve the proposed line, and in this he was assisted by his 18-year-old son, Robert Stephenson, whom he had ensured received the theoretical education which he himself lacked. It is doubtful whether either could have succeeded without the other; together they were to make the steam railway practicable.At George Stephenson's instance, much of the S \& DR was laid with wrought-iron rails recently developed by John Birkinshaw at Bedlington Ironworks, Morpeth. These were longer than cast-iron rails and were not brittle: they made a track well suited for locomotives. In June 1823 George and Robert Stephenson, with other partners, founded a firm in Newcastle upon Tyne to build locomotives and rolling stock and to do general engineering work: after its Managing Partner, the firm was called Robert Stephenson \& Co.In 1824 the promoters of the Liverpool \& Manchester Railway (L \& MR) invited George Stephenson to resurvey their proposed line in order to reduce opposition to it. William James, a wealthy land agent who had become a visionary protagonist of a national railway network and had seen Stephenson's locomotives at Killingworth, had promoted the L \& MR with some merchants of Liverpool and had carried out the first survey; however, he overreached himself in business and, shortly after the invitation to Stephenson, became bankrupt. In his own survey, however, George Stephenson lacked the assistance of his son Robert, who had left for South America, and he delegated much of the detailed work to incompetent assistants. During a devastating Parliamentary examination in the spring of 1825, much of his survey was shown to be seriously inaccurate and the L \& MR's application for an Act of Parliament was refused. The railway's promoters discharged Stephenson and had their line surveyed yet again, by C.B. Vignoles.The Stockton \& Darlington Railway was, however, triumphantly opened in the presence of vast crowds in September 1825, with Stephenson himself driving the locomotive Locomotion, which had been built at Robert Stephenson \& Co.'s Newcastle works. Once the railway was at work, horse-drawn and gravity-powered traffic shared the line with locomotives: in 1828 Stephenson invented the horse dandy, a wagon at the back of a train in which a horse could travel over the gravity-operated stretches, instead of trotting behind.Meanwhile, in May 1826, the Liverpool \& Manchester Railway had successfully obtained its Act of Parliament. Stephenson was appointed Engineer in June, and since he and Vignoles proved incompatible the latter left early in 1827. The railway was built by Stephenson and his staff, using direct labour. A considerable controversy arose c. 1828 over the motive power to be used: the traffic anticipated was too great for horses, but the performance of the reciprocal system of cable haulage developed by Benjamin Thompson appeared in many respects superior to that of contemporary locomotives. The company instituted a prize competition for a better locomotive and the Rainhill Trials were held in October 1829.Robert Stephenson had been working on improved locomotive designs since his return from America in 1827, but it was the L \& MR's Treasurer, Henry Booth, who suggested the multi-tubular boiler to George Stephenson. This was incorporated into a locomotive built by Robert Stephenson for the trials: Rocket was entered by the three men in partnership. The other principal entrants were Novelty, entered by John Braithwaite and John Ericsson, and Sans Pareil, entered by Timothy Hackworth, but only Rocket, driven by George Stephenson, met all the organizers' demands; indeed, it far surpassed them and demonstrated the practicability of the long-distance steam railway. With the opening of the Liverpool \& Manchester Railway in 1830, the age of railways began.Stephenson was active in many aspects. He advised on the construction of the Belgian State Railway, of which the Brussels-Malines section, opened in 1835, was the first all-steam railway on the European continent. In England, proposals to link the L \& MR with the Midlands had culminated in an Act of Parliament for the Grand Junction Railway in 1833: this was to run from Warrington, which was already linked to the L \& MR, to Birmingham. George Stephenson had been in charge of the surveys, and for the railway's construction he and J.U. Rastrick were initially Principal Engineers, with Stephenson's former pupil Joseph Locke under them; by 1835 both Stephenson and Rastrick had withdrawn and Locke was Engineer-in-Chief. Stephenson remained much in demand elsewhere: he was particularly associated with the construction of the North Midland Railway (Derby to Leeds) and related lines. He was active in many other places and carried out, for instance, preliminary surveys for the Chester \& Holyhead and Newcastle \& Berwick Railways, which were important links in the lines of communication between London and, respectively, Dublin and Edinburgh.He eventually retired to Tapton House, Chesterfield, overlooking the North Midland. A man who was self-made (with great success) against colossal odds, he was ever reluctant, regrettably, to give others their due credit, although in retirement, immensely wealthy and full of honour, he was still able to mingle with people of all ranks.[br]Principal Honours and DistinctionsPresident, Institution of Mechanical Engineers, on its formation in 1847. Order of Leopold (Belgium) 1835. Stephenson refused both a knighthood and Fellowship of the Royal Society.Bibliography1815, jointly with Ralph Dodd, British patent no. 3,887 (locomotive drive by connecting rods directly to the wheels).1817, jointly with William Losh, British patent no. 4,067 (steam springs for locomotives, and improvements to track).Further ReadingL.T.C.Rolt, 1960, George and Robert Stephenson, Longman (the best modern biography; includes a bibliography).S.Smiles, 1874, The Lives of George and Robert Stephenson, rev. edn, London (although sycophantic, this is probably the best nineteenthcentury biography).PJGR -
14 dovere
1. v/i have to, mustdevo averlo I must have it, I have to have itnon devo dimenticare I mustn't forgetdeve arrivare oggi she is supposed to arrive todaycome si deve ( bene) properlypersona very decentdoveva succedere it was bound to happendovresti avvertirlo you ought to or should let him know2. v/t owe3. m dutyper dovere out of duty* * *dovere v.servile1 ( obbligo, necessità assoluta) must, to have (got) to, to be to; shall (spec. form. nella 2a e 3a pers. sing. e pl.): devo finire questo lavoro entro domani, I must (o I have to o I've got to) finish this job by tomorrow; ha dovuto studiare tutto il giorno, he had to study all day; dobbiamo salvaguardare l'ambiente, we must (o we've got to) protect the environment; devi imparare a controllarti, you must (o you've got to) learn to control yourself; dovevamo partire subito, we had to leave at once; le domande d'iscrizione dovranno essere presentate entro febbraio, applications must (o are to) be made by the end of February; non dobbiamo fermarci un minuto di più, we mustn't stop a minute longer; devo proprio firmare?, do I have to (o have I got to o must I) sign?; la commissione deve riunirsi al più presto, the commission is to meet as soon as possible; secondo regolamento, nessuno deve lasciare la scuola senza autorizzazione, according to regulations, no one shall leave the school without authorization; tutti gli ufficiali devono presentarsi al colonnello, all officers are to (o shall) report to the colonel; che cosa devo fare?, what am I to do?; non devono esserci equivoci questa volta, there must be no misunderstanding this time; dovendo assentarmi per lavoro, non potrò presenziare alla cerimonia, having to be away on business, I shall be unable to attend the ceremony // comportarsi come si deve, to behave oneself (properly) // una persona come si deve, a decent person // un lavoro come si deve, a job well done // ( possibile) che debba sempre averla vinta tu?, why must you always be right?2 ( necessità, opportunità, convenienza) to have to, must (in frasi affermative e interr. positive); need (solo in frasi interr. positive); not to need to, need not, not to have (got) to (in frasi negative e interr. negative): dovrò alzarmi presto se voglio prendere il primo treno, I'll have to get up early if I want to catch the first train; dovremo far controllare l'impianto elettrico, we'll have to have the electric system checked; se vuole dimagrire dovrà mettersi a dieta, he'll have to go on a diet if he wants to lose weight; dovrai smettere di fumare prima o poi, you'll have to give up smoking sooner or later; dovete vedere quel film, you must, see that film; devi venire a cena qualche sera, you must (o you'll have to) come to dinner some evening; devi farti tagliare i capelli, you must (o you'll have to) get your hair cut; devi proprio andare in banca?, do you really need to go to the bank?; devi fare benzina?, do you need (to get) any petrol?; si deve mandare un acconto?, does one need to send a deposit?; non dovete accompagnarmi all'aeroporto, posso prendere un taxi, you needn't (o you don't have to o you don't need to) take me to the airport, as I can get a taxi; non è detto che debba andare proprio tu, you don't necessarily have to go; non dovevi telefonare?, didn't you have to make a phone call?; perché devi sempre interferire?, why must you keep on interfering?3 ( certezza, forte probabilità) must, to be bound to; ( inevitabilità) to have to, must: dev'esserci una spiegazione, there must be an explanation; dev'essere questo l'albergo, this must be the hotel; deve arrivare da un momento all'altro, he's bound to arrive any moment; devono aver capito, they must have understood; devi certamente aver sentito parlare di lui, you must (o you're bound to) have heard of him; doveva succedere prima o poi, it had to (o it was bound to) happen sooner or later; dovrà essere informato, he'll have to be told; dev'essere stato emozionante assistere a quell'incontro, it must have been exciting to be at that match4 ( essere previsto, prestabilito) to be to; (spec. di treno ecc.) to be due (to): doveva diventare presidente, he was to become president; le nozze dovevano essere celebrate l'indomani, the wedding was to take place next day; devo essere a Torino alle 10, I'm to be in Turin at 10 o'clock; l'aereo deve atterrare alle 11.15, the plane is due (to land) at 11.15; il treno doveva arrivare a Firenze alla 18, the train was due in Florence at 6 p.m.5 ( supposizione, previsione, possibilità) must: dev'essere già a casa, he must be home by now; non devono essere ancora partiti, they mustn't (o they can't) have left yet; devono essere le 3, it must be 3 o'clock; quello dev'essere il Monte Bianco, that must be Mont Blanc; deve sentirsi molto sola, she must be very lonely; non devono essersi capiti, they can't have understood each other; devi aver sofferto molto, you must have had a hard time; dev'essere rimasto male, he must have been upset; deve aver bevuto, he must have been drinking; non doveva avere più di 15 anni, he couldn't have been more than 15 (years of age); doveva essere molto tardi quando sei rincasato, it must have been very late when you got in // deve piovere, it's going to rain // dovrà rispondere di tentato omicidio, he's going to be charged with attempted murder ∙ Come si nota dagli esempi, in frasi negative si può usare can, could in luogo di must6 (per esprimere una richiesta, nella 1a pers. s. e pl. del pres. indic.) shall: devo dirglielo?, shall I tell him?; dobbiamo passare a prenderti?, shall we call for you?; devo chiudere la porta a chiave?, shall I lock the door?; devo pagare in contanti o posso darle un assegno?, shall I pay cash or can I give you a cheque?; dobbiamo venire anche noi?, shall we come too?; devo farti telefonare da Michele?, shall I get Michael to call you?7 (al cond.) should, ought to: dovrebbero arrivare per le otto, they should (o they ought to) be here by eight; avrei dovuto scusarmi, I should have apologized; dovrebbe partire stasera, he should leave tonight; avresti dovuto andarci, you should have gone (there); dovreste aiutarlo, you ought to help him; avresti dovuto saperlo da un pezzo, you should have known ages ago; avrebbero dovuto telefonarmi, they ought to have phoned me8 (al cong. imperf. in frasi ipotetiche) should, were to: non dimenticherò mai quel giorno, dovessi campare 100 anni, I'll never forget that day, if I were to live 100 years; se dovesse fallire..., if he were to fail...; se dovesse venire, avvertimi, if he should come (o should he come), let me know; se doveste passare da Bologna, telefonatemi, if you should happen to be passing through Bologna, give me a call; se dovessi incontrarlo, digli che ho bisogno di parlargli, if you should meet (o should you meet) him, tell him I need to have a word with him; (se) dovessero stare così le cose..., if that were the case...9 ( essere obbligato, costretto) to be compelled (o obliged o forced) to; to feel* bound to: devo rinunciare all'incarico per motivi di salute, I am compelled (o obliged o forced) to give up the post for health reasons; dovette abbandonare il paese, he was forced to leave the country; se non provvederete al mio risarcimento, dovrò rivolgermi al mio avvocato, if you fail to compensate me, I shall be obliged to contact my solicitor; in seguito alle gravi accuse, il ministro dovette dimettersi, as a result of the grave allegations, the minister was forced to resign; devo riconoscere che avevamo torto, I feel bound to say we were wrong10 (all'imperfetto con valore di condizionale per esprimere consiglio, suggerimento) should have (o ought to have) + part. pass.: dovevi aspettartelo, you should have expected it; non doveva rispondere in quel modo, he shouldn't have answered like that; dovevamo pensarci prima, we ought to have thought of it before; dovevate vederlo, you should have seen him; dovevano immaginare che ti saresti offeso, they should have realised you'd be offended; non dovevi fare tante storie, you shouldn't have made such a fuss◆ v.tr.1 ( essere debitore di) to owe: gli devo 500 euro, I owe him 500 euros; che cosa le devo?, what do I owe you?; deve il successo alla sua grande popolarità, he owes his success to his great popularity; ti dobbiamo molta riconoscenza, we owe you a great debt of gratitude; gli dovevamo tutto, we owed everything to him; ti devo la vita, I owe my life to you2 ( derivare) to take*: la Bolivia deve il suo nome a Simon Bolivar, Bolivia takes its name from Simon Bolivar3 ( nella forma passiva) to be due: a che cosa era dovuto il ritardo?, what was the delay due to?; ciò si deve alla sua negligenza, that is due to his negligence; l'incidente non era dovuto a un guasto meccanico, ma a un errore del pilota, the accident was not due to mechanical failure, but to pilot error; la morte era dovuta a cause naturali, death was due to natural causes; la teoria della relatività si deve a Einstein, we owe the theory of relativity to Einstein.dovere s.m.1 duty: i miei doveri di madre, my duties as a mother; i nostri doveri verso Dio, la patria, il prossimo, our duty to God, our country, our fellow creatures; i diritti e i doveri del cittadino, the rights and duties of the citizen; (dir.) dovere legale, legal duty; (dir.) soggetto a dovere, liable to duty; per senso del dovere, from a sense of duty; com'è mio dovere, as in duty bound; conosco il mio dovere, I know my duty; ho il dovere d'informarvi, I must inform you; mancò al suo dovere, he failed in his duty; mi faccio un dovere di imitarvi in tutto, I make a point of imitating you in everything; morì vittima del dovere, he died doing his duty; sento il dovere di aiutarti, I feel bound to help you; si credeva in dovere di seguirmi dappertutto, he thought it was his duty to follow me everywhere // avere il senso del dovere, to be conscious of one's duty; fare il proprio dovere, to do one's duty: fa' il tuo dovere a qualunque costo!, do your duty at all costs! // a dovere, properly (o as it should be): ti ha sistemato a dovere!, he settled your hash! // chi di dovere penserà a farlo, the person responsible will look after it; ci rivolgeremo a chi di dovere, we'll apply to the person in charge // visita di dovere, duty call // prima il dovere poi il piacere, (prov.) work before pleasure2 pl. (antiq.) ( saluti, convenevoli) (kind) regards, compliments, respects: i miei doveri a vostra sorella, my kindest regards to your sister; porgere i propri doveri a qlcu., to pay one's respects to s.o.* * *[do'vere]1. vt irreg(soldi, riconoscenza) to owegli devo il mio successo — I owe my success to him, I have him to thank for my success
1) (obbligo) to have toè una persona come si deve — he is a very decent person
non avrebbe dovuto esserne informata che il giorno dopo — she was not supposed to hear about it until the following day
avrebbe dovuto farlo — he should have o ought to have done it
devo partire domani — I'm leaving tomorrow, (purtroppo) I've got to leave tomorrow
non devi zuccherarlo — (non è necessario) there's no need to add sugar
2)lo farò, dovessi morire — I'll do it if it kills me
3)deve arrivare alle 10 — he should o is due to arrive at 104)deve essere difficile farlo — it must be difficult to do3. sm(obbligo) dutyrivolgersi a chi di dovere — to apply to the appropriate authority o person
il proprio dovere di elettore — to do one's duty as a voterun dovere di qc — to make sth one's duty* * *I 1. [do'vere](when it is modal verb the use of the auxiliary essere or avere depends on the verb in the infinitive that follows) verbo modale1) (per esprimere obbligo) must, to have* to2) (per esprimere necessità, esigenza, convenienza) to have* (got) to3) (per esprimere consiglio, raccomandazione) should, ought to2.verbo transitivo1) (essere debitore di) to owe [denaro, cena] (a qcn. to sb.)quanto le devo? — (per un servizio) how much do I owe you? (per un acquisto) how much is it?
mi deve un favore, delle scuse — he owes me a favour, an apology
2) come si deve [comportarsi, agire] properlyII 1. [do'vere]sostantivo maschile1) (obbligo) duty ( nei confronti di, verso to)a chi di dovere — the person o people concerned
2) a dovere properly, in the right way2.- i coniugali — conjugal o marital duties
••prima il dovere, poi il piacere — prov. = duty comes first
* * *dovere1/do'vere/ [43] (when it is modal verb the use of the auxiliary essere or avere depends on the verb in the infinitive that follows)1 (per esprimere obbligo) must, to have* to; il prestito deve essere rimborsato in un anno the loan must be repaid in one year; devo veramente alzarmi alle 7? must I really be up at 7 am? non devi farne parola con nessuno you mustn't mention this to anyone; devo andare a prendere i bambini a scuola I have to collect the children from school; fai quello che devi do what you have to2 (per esprimere necessità, esigenza, convenienza) to have* (got) to; si doveva fare qualcosa something had to be done; devi metterti a dieta se vuoi dimagrire you have to diet if you want to slim down; dobbiamo proprio discuterne adesso? need we discuss it now? devo prendere un ombrello? should I take an umbrella? do I need to take an umbrella? che devo fare? what am I to do?3 (per esprimere consiglio, raccomandazione) should, ought to; dovresti riflettere prima di parlare you should think before you speak4 (per esprimere probabilità) doveva essere lui it must have been him; dev'esserci qualche errore! there must be some mistake!5 (per esprimere previsione) dovremmo arrivare per le sei we should be there by six o'clock; devo vederlo domani I'll be seeing him tomorrow; quando deve o dovrebbe nascere il bambino? when's the baby due?6 (in offerte di cortesia o richieste di istruzioni) shall; dobbiamo aspettarti? shall we wait for you?1 (essere debitore di) to owe [denaro, cena] (a qcn. to sb.); quanto le devo? (per un servizio) how much do I owe you? (per un acquisto) how much is it? devo a te la mia vittoria it's thanks to you that I won; mi deve un favore, delle scuse he owes me a favour, an apology2 come si deve [comportarsi, agire] properly; un uomo come si deve a decent man.\See also notes... (dovere.pdf)————————dovere2/do'vere/I sostantivo m.1 (obbligo) duty ( nei confronti di, verso to); avere il dovere di fare to have the duty to do; avere il senso del dovere to have a sense of duty; fare il proprio dovere to do one's duty; sentirsi in dovere di fare to feel duty bound to do; visita di dovere duty call; a chi di dovere the person o people concerned2 a dovere properly, in the right wayII doveri m.pl.ant. (omaggi) respectsprima il dovere, poi il piacere prov. = duty comes first\- i coniugali conjugal o marital duties. -
15 система
complex, chain, installation, method, repertoire вчт., repertory, structure, system* * *систе́ма ж.
systemдубли́ровать систе́му — duplicate a systemотла́живать систе́му — tune up a systemсисте́ма функциони́рует норма́льно киб. — the system is well-behavedавари́йная систе́ма ав. — emergency systemсисте́ма авари́йного покида́ния ( самолёта) — escape systemавтомати́ческая систе́ма — automatic systemсисте́ма автомати́ческого регули́рования [САР] — automatic-control system of the regulator(y) typeсисте́ма автомати́ческого регули́рования, де́йствующая по отклоне́нию — error-actuated control systemсисте́ма автомати́ческого регули́рования, за́мкнутая — closed-loop control systemсисте́ма автомати́ческого регули́рования, и́мпульсная — sampling control systemсисте́ма автомати́ческого регули́рования, многоё́мкостная — multicapacity control systemсисте́ма автомати́ческого регули́рования, многоко́нтурная — multiloop control systemсисте́ма автомати́ческого регули́рования, многоме́рная — multivariable control systemсисте́ма автомати́ческого регули́рования, програ́ммная — time-pattern control systemсисте́ма автомати́ческого регули́рования, разо́мкнутая — open-loop control systemсисте́ма автомати́ческого регули́рования следя́щего ти́па — servo-operation control systemсисте́ма автомати́ческого регули́рования со случа́йными возде́йствиями, и́мпульсная — random-input sampled-data systemсисте́ма автомати́ческого регули́рования со стабилиза́цией (проце́сса) — regulator-operation control systemсисте́ма автомати́ческого управле́ния [САУ] — automatic-control systemсисте́ма автомати́ческого управле́ния, цифрова́я — digital control systemсисте́ма автоподстро́йки частоты́ [АПЧ] — AFC systemсисте́ма АПЧ захва́тывает частоту́ — the AFC system locks on to the (desired) frequencyсисте́ма АПЧ осуществля́ет по́иск частоты́ — the AFC system searches for the (desired) frequencyсисте́ма автоподстро́йки частоты́, фа́зовая [ФАПЧ] — phase-lock loop, PLLагрега́тная, унифици́рованная систе́ма ( советская система пневматических средств автоматики) — standard-module pneumatic instrumentation systemадапти́вная систе́ма — adaptive systemапериоди́ческая систе́ма — critically damped systemасинхро́нная систе́ма — asynchronous systemастати́ческая систе́ма — zero-constant-error systemастати́ческая систе́ма второ́го поря́дка — Type 2 [zero-velocity-error] systemастати́ческая систе́ма пе́рвого поря́дка — Type 1 [zero-position-error] systemсисте́ма без резерви́рования — non-redundant systemсисте́ма блокиро́вки ( радиационной установки) — interlock systemсисте́ма ва́ла ( в допусках и посадках) — the basic shaft systemвентиляцио́нная систе́ма — ventilation systemвентиляцио́нная, вытяжна́я систе́ма — exhaust ventilation systemвзаи́мные систе́мы — mutual systemsсисте́ма водоснабже́ния — water(-supply) systemсисте́ма водоснабже́ния, оборо́тная — circulating [closed-circuit] water systemсисте́ма водоснабже́ния, прямото́чная — once-through [run-of-river cooling] systemсисте́ма возду́шного отопле́ния — warm-air heating systemсисте́ма воспроизведе́ния ( записи) — reproduction systemсисте́ма впры́ска двс. — injection systemсисте́ма впры́ска, предка́мерная двс. — antechamber system of injectionсисте́ма впу́ска двс. — induction [intake] systemсисте́ма вы́борки вчт. — selection systemвытяжна́я систе́ма — exhaust systemвычисли́тельная систе́ма — computer [computing] systemвычисли́тельная, многома́шинная систе́ма — multicomputer systemсисте́ма генера́тор — дви́гатель — Ward-Leonard speed-control systemгибри́дная систе́ма — hybrid systemсисте́ма громкоговоря́щей свя́зи — public-address [personnel-address, PA] systemгрузова́я систе́ма мор. — cargo (handling) systemдвухкомпоне́нтная систе́ма хим. — two-component [binary] systemдвухни́точная систе́ма тепл. — two-flow systemдвухпроводна́я систе́ма эл. — two-wire systemдвухэлектро́дная систе́ма ( электроннооптического преобразователя) — self-focusing (diod) systemдиспе́рсная систе́ма — disperse systemдиссипати́вная систе́ма — dissipative systemсисте́ма дистанцио́нного управле́ния — remote control systemдиффере́нтная систе́ма мор. — trim systemдифференциа́льная систе́ма тлф. — hybrid setсисте́ма дождева́ния — sprinkling systemсисте́ма до́пусков — tolerance systemсисте́ма до́пусков, двусторо́нняя [симметри́чная], преде́льная — bilateral system of tolerancesсисте́ма до́пусков и поса́док — system [classification] of fits and tolerancesсисте́ма до́пусков, односторо́нняя [асимметри́чная], преде́льная — unilateral system of tolerancesсисте́ма дрена́жа ( топливных баков) ав. — vent systemсисте́ма едини́ц — system of unitsсисте́ма едини́ц, междунаро́дная [СИ] — international system of units, SIсисте́ма едини́ц МКГСС уст. — MKGSS [metre-kilogram(me)-force-second ] system (of units)систе́ма едини́ц МКС — MKS [metre-kilogram(me)-second ] system (of units)систе́ма едини́ц МКСА — MKSA [metre-kilogram(me)-mass-second-ampere ] system (of units), absolute practical system of unitsсисте́ма едини́ц МКСГ — MKSG [metre-kilogram(me)-force-second-kelvin ] system (of units)систе́ма едини́ц МСС — MSC [metre-second-candela] system (of units)систе́ма едини́ц МТС — MTS [metre-ton-second] system (of units)систе́мы едини́ц СГС — CGS [centimetre-gram(me)-second ] systems (of units)систе́ма едини́ц, техни́ческая — engineer's system of unitsже́зловая систе́ма ж.-д. — staff systemсисте́ма жизнеобеспе́чения косм. — life-support (and survival) systemсисте́ма жизнеобеспе́чения, автоно́мная — back-pack life-support systemсисте́ма зажига́ния — ignition systemсисте́ма зажига́ния, полупроводнико́вая — transistor(ized) ignition systemсисте́ма зажига́ния, электро́нная — electronic ignition systemсисте́ма заземле́ния — earth [ground] networkзамедля́ющая систе́ма — ( в электровакуумных устройствах СВЧ) slow-wave structure; ( волноводная) slow-wave guide; ( коаксиальная) wave delay lineзамедля́ющая, встре́чно-стержнева́я систе́ма — interdigital [interdigitated] slow-wave structureзамедля́ющая, гребе́нчатая систе́ма — vane-line slow-wave structure, finned slow-wave guideзамедля́ющая, спира́льная систе́ма — helical slow-wave structureза́мкнутая систе́ма — closed systemсисте́ма за́писи вчт. — writing systemзапомина́ющая систе́ма вчт. — storage systemсисте́ма затопле́ния мор. — flood(ing) systemсисте́ма захо́да на поса́дку по кома́ндам с земли́ ав. — ground-controlled-approach [GCA] systemзачи́стная систе́ма ( танкера) — stripping systemсисте́ма зерка́л Фабри́—Перо́ — Fabry-Perot [FP] mirror systemзерка́льно-ли́нзовая систе́ма ( в микроскопе) — catadioptric systemсисте́ма золоудале́ния — ash-handling systemсисте́ма зо́льников кож. — lime yard, lime roundизоли́рованная систе́ма — isolated systemсисте́ма индивидуа́льного вы́зова свз. — paging systemинерциа́льная систе́ма — inertial systemинформацио́нная систе́ма — information systemинформацио́нно-поиско́вая систе́ма — information retrieval systemисхо́дная систе́ма — prototype [original] systemканализацио́нная систе́ма — sewer(age) systemканализацио́нная, общесплавна́я систе́ма — combined sewer(age) systemканализацио́нная, разде́льная систе́ма — separate sewer(age) systemсисте́ма коди́рования — coding systemколеба́тельная систе́ма — (преим. механическая) vibratory [vibrating] system; ( немеханическая) oscillatory [resonant] systemколеба́тельная, многорезона́торная систе́ма ( магнетрона) — multiple-cavity resonatorколориметри́ческая трёхцве́тная систе́ма — three-colour photometric systemсисте́ма кома́нд ЭВМ — instruction set of a computer, computer instruction setсисте́ма координа́т — coordinate systemсвя́зывать систе́му координа́т с … — tie in a coordinate system with …, tie coordinate system to …систе́ма координа́т, инерциа́льная — inertial frameсисте́ма координа́т, лаборато́рная — laboratory coordinate system, laboratory frame of referenceсисте́ма координа́т, ле́вая — left-handed coordinate systemсисте́ма координа́т, ме́стная — local (coordinate) systemсисте́ма координа́т, поко́ящаяся — rest (coordinate) systemсисте́ма координа́т, пото́чная аргд. — (relative) wind coordinate systemсисте́ма координа́т, пра́вая — right-handed coordinate systemсисте́ма координа́т, свя́занная с дви́жущимся те́лом — body axes (coordinate) systemсисте́ма координа́т, свя́занная с Землё́й — fixed-in-the-earth (coordinate) systemсисте́ма корре́кции гироско́па — gyro monitor, (long-term) referenceсисте́ма корре́кции гироско́па, магни́тная — magnetic gyro monitor, magnetic referenceсисте́ма корре́кции гироско́па, ма́ятниковая — gravity gyro monitor, gravity referenceсисте́ма криволине́йных координа́т — curvilinear coordinate systemкурсова́я систе́ма ав. — directional heading [waiting] systemли́тниковая систе́ма — gating [pouring gate] systemмагни́тная систе́ма — magnetic systemсисте́ма ма́ссового обслу́живания — queueing [waiting] systemсисте́ма ма́ссового обслу́живания, сме́шанная — combined loss-delay queueing [waiting] systemсисте́ма ма́ссового обслу́живания с ожида́нием — delay queueing [waiting] systemсисте́ма ма́ссового обслу́живания с отка́зами — congestion queueing [waiting] systemсисте́ма ма́ссового обслу́живания с поте́рями — loss-type queueing [waiting] systemмени́сковая систе́ма — meniscus [Maksutov] systemсисте́ма мер, метри́ческая — metric systemсисте́ма мер, типогра́фская — point systemмехани́ческая систе́ма — mechanical systemмехани́ческая, несвобо́дная систе́ма — constrained material systemсисте́ма мно́гих тел — many-body systemмногокана́льная систе́ма свз. — multichannel systemмногокомпоне́нтная систе́ма — multicomponent systemмногоме́рная систе́ма — multivariable systemмодели́руемая систе́ма — prototype systemмо́дульная систе́ма — modular systemмультипле́ксная систе́ма — multiplex systemсисте́ма набо́ра ( корпуса судна) — framing systemсисте́ма набо́ра, кле́тчатая — cellular framing systemсисте́ма набо́ра, попере́чная — transverse framing systemсисте́ма набо́ра, продо́льная — longitudinal framing systemсисте́ма набо́ра, сме́шанная — mixed framing systemсисте́ма навига́ции — navigation systemсисте́ма навига́ции, автоно́мная — self-contained navigation systemсисте́ма навига́ции, гиперболи́ческая — hyperbolic navigation systemсисте́ма навига́ции, дальноме́рная — rho-rho [ - ] navigation systemсисте́ма навига́ции, дальноме́рно-угломе́рная — rho-theta [ - ] navigation systemсисте́ма навига́ции, кругова́я — rho-rho [ - ] navigation systemсисте́ма навига́ции, ра́зностно-дальноме́рная [РДНС] — hyperbolic navigation systemсисте́ма навига́ции, угломе́рная — theta-theta [ - ] navigation systemсисте́ма на стру́йных элеме́нтах, логи́ческая — fluid logic systemсисте́ма нумера́ции тлф. — numbering schemeсисте́ма обду́ва стё́кол авто, автмт. — demisterсисте́ма обнаруже́ния оши́бок ( в передаче данных) свз. — error detection systemсисте́ма обогре́ва стё́кол авто, ав. — defrosterсисте́ма обозначе́ний — notation, symbolismсисте́ма обозначе́ний Междунаро́дного нау́чного радиообъедине́ния — URSI symbol systemсисте́ма обозначе́ния про́бы, кара́тная — carat test sign systemсисте́ма обозначе́ния про́бы, метри́ческая — metric test sign systemобора́чивающая систе́ма опт. — erecting [inversion (optical)] systemобора́чивающая, при́зменная систе́ма опт. — prism-erecting (optical) systemсисте́ма обрабо́тки да́нных — data processing [dp] systemсисте́ма обрабо́тки да́нных в реа́льном масшта́бе вре́мени — real time data processing systemсисте́ма обрабо́тки да́нных, операти́вная — on-line data processing systemсисте́ма обрабо́тки отхо́дов — waste treatment systemсисте́ма объё́много пожаротуше́ния мор. — fire-smothering systemодноотка́зная систе́ма — fall-safe systemопти́ческая систе́ма — optical system, optical trainопти́ческая, зерка́льно-ли́нзовая систе́ма — catadioptric systemсисте́ма ориента́ции ав. — attitude control systemороси́тельная систе́ма — irrigation system, irrigation projectсисте́ма ороше́ния мор. — sprinkling systemсисте́ма освеще́ния — lighting (system)осуши́тельная систе́ма мор. — drain(age) systemсисте́ма отбо́ра во́здуха от компре́ссора — compressor air-bleed systemсисте́ма отве́рстия ( в допусках и посадках) — the basic hole systemотклоня́ющая систе́ма ( в ЭЛТ) — deflecting system, deflection yokeотклоня́ющая, ка́дровая систе́ма — vertical (deflection) yokeотклоня́ющая, магни́тная систе́ма — magnetic (deflection) yokeотклоня́ющая, стро́чная систе́ма — horizontal [line] (deflection) yokeсисте́ма относи́тельных едини́ц — per-unit systemотопи́тельная систе́ма — heating systemотопи́тельная систе́ма с разво́дкой све́рху — down-feed heating systemотопи́тельная систе́ма с разво́дкой сни́зу — up-feed heating systemсисте́ма отсчё́та — frame of reference, (reference) frame, reference systemсисте́ма отсчё́та, инерциа́льная — inertial frame of referenceсисте́ма охлажде́ния — cooling systemсисте́ма охлажде́ния, возду́шная — air-cooling systemсисте́ма охлажде́ния, жи́дкостная — liquid-cooling systemсисте́ма охлажде́ния, испари́тельная — evaporative cooling systemсисте́ма охлажде́ния, каска́дная — cascade refrigeration systemсисте́ма охлажде́ния непосре́дственным испаре́нием холоди́льного аге́нта — direct expansion systemсисте́ма охлажде́ния, пане́льная — panel cooling systemсисте́ма охлажде́ния, рассо́льная, двухтемперату́рная — dual-temperature brine refrigeration systemсисте́ма охлажде́ния, рассо́льная, закры́тая — closed brine cooling systemсисте́ма охлажде́ния, рассо́льная, с испаре́нием — brine spray cooling systemсисте́ма охлажде́ния с теплозащи́тной руба́шкой — jacketed cooling systemсисте́ма очи́стки воды́ — water purification systemсисте́ма па́мяти — memory [storage] systemсисте́ма парашю́та, подвесна́я — parachute harnessсисте́ма переда́чи да́нных — data transmission systemсисте́ма переда́чи да́нных с обра́тной свя́зью — information feedback data transmission systemсисте́ма переда́чи да́нных с коммута́цией сообще́ний и промежу́точным хране́нием — store-and-forward data networkсисте́ма переда́чи да́нных с реша́ющей обра́тной свя́зью — decision feedback data transmission systemсисте́ма переда́чи и́мпульсов набо́ра, шле́йфная тлф. — loop dialling systemсисте́ма переда́чи на одно́й боково́й полосе́ и пода́вленной несу́щей — single-sideband suppressed-carrier [SSB-SC] systemсисте́ма переда́чи на одно́й боково́й полосе́ с осла́бленной несу́щей — single-sideband reduced carrier [SSB-RC] systemсисте́ма пита́ния двс. — fuel systemсисте́ма пита́ния котла́ — boiler-feed piping systemсисте́ма питьево́й воды́ мор. — drinking-water [portable-water] systemсисте́ма пода́чи то́плива, вытесни́тельная — pressure feeding systemсисте́ма пода́чи то́плива самотё́ком — gravity feeding systemсисте́ма пода́чи то́плива, турбонасо́сная — turbopump feeding systemподви́жная систе́ма ( измерительного прибора) — moving element (movement не рекомендован соответствующими стандартами)систе́ма пожа́рной сигнализа́ции — fire-alarm systemсисте́ма пожаротуше́нения — fire-extinguishing systemсисте́ма поса́дки — landing systemсисте́ма поса́дки по прибо́рам — instrument landing system (сокращение ILS относится к международной системе, советская система обозначается СП — instrument landing system)систе́ма проду́вки авто — scavenging systemпротивообледени́тельная систе́ма ав. — ( для предотвращения образования льда) anti-icing [ice protection] system; ( для удаления образовавшегося льда) de-icing systemпротивопожа́рная систе́ма — fire-extinguishing systemпротивото́чная систе́ма — counter-current flow systemсисте́ма прямо́го перено́са ( электроннооптического преобразователя) — proximity focused systemпрямото́чная систе́ма — direct-flow systemсисте́ма прямоуго́льных координа́т — Cartesian [rectangular] coordinate systemсисте́ма, рабо́тающая в и́стинном масшта́бе вре́мени — real-time systemрадиолокацио́нная, втори́чная систе́ма УВД — ( для работы внутри СССР) SSR system; ( отвечающая нормам ИКАО) ICAO SSR systemрадиолокацио́нная систе́ма с электро́нным скани́рованием — electronic scanning radar system, ESRSрадиомая́чная систе́ма — radio rangeрадиомая́чная, многокана́льная систе́ма — multitrack radio rangeсисте́ма радионавига́ции — radio-navigation system (см. тж. система навигации)развё́ртывающая систе́ма тлв. — scanning systemсисте́ма разрабо́тки — mining system, method of miningраспредели́тельная систе́ма — distribution systemрегенерати́вная систе́ма тепл. — feed heating systemрезерви́рованная систе́ма — redundant systemсисте́ма ремне́й, подвесна́я ( респиратора) — harnessсисте́ма ру́бок лес. — cutting systemсамонастра́ивающаяся систе́ма — self-adjusting systemсамообуча́ющаяся систе́ма киб. — learning systemсамоорганизу́ющаяся систе́ма — self-organizing systemсамоприспоса́бливающаяся систе́ма киб. — adaptive systemсамоуравнове́шивающаяся систе́ма — self-balancing systemсамоусоверше́нствующаяся систе́ма — evolutionary systemсанита́рная систе́ма мор. — sanitary systemсисте́ма свя́зи — communication systemсопряга́ть систе́му свя́зи, напр. с ЭВМ — interface a communication network with, e. g., a computerуплотня́ть систе́му свя́зи телегра́фными кана́лами — multiplex telegraph channels on a communication linkсисте́ма свя́зи, асинхро́нная — asyncronous communication systemсисте́ма свя́зи, двои́чная — binary communication systemсисте́ма свя́зи, многокана́льная — multi-channel communication systemсисте́ма свя́зи на метео́рных вспы́шках — meteor burst [meteor-scatter] communication systemсисте́ма свя́зи, разветвлё́нная — deployed communication systemсисте́ма свя́зи с испо́льзованием да́льнего тропосфе́рного рассе́яния — troposcatter communication systemсисте́ма свя́зи с испо́льзованием ионосфе́рного рассе́яния — ionoscatter communication systemсисте́ма свя́зи с переспро́сом — ARQ communication systemсисте́ма свя́зи, уплотнё́нная — multiplex communication systemсисте́ма свя́зи, уплотнё́нная, с временны́м разделе́нием сигна́лов — time division multiplex [TDM] communication systemсисте́ма свя́зи, уплотнё́нная, с разделе́нием по ко́дам — code-division multiplex(ing) communication systemсисте́ма свя́зи, уплотнё́нная, с часто́тным разделе́нием сигна́лов — frequency division multiplex [FDM] communication systemсельси́нная систе́ма — synchro systemсельси́нная систе́ма в индика́торном режи́ме — synchro-repeater [direct-transmission synchro] systemсельси́нная систе́ма в трансформа́торном режи́ме — synchro-detector [control-transformer synchro] systemсельси́нная, двухотсчё́тная систе́ма — two-speed [coarse-fine] synchro systemсельси́нная, дифференциа́льная систе́ма — differential synchro systemсельси́нная, одноотсчё́тная систе́ма — singlespeed synchro systemсисте́ма сил — force systemсисте́ма синхрониза́ции — timing [synchronizing] mechanismсинхро́нная систе́ма — synchronous systemследя́щая систе́ма — servo (system)следя́щая, позицио́нная систе́ма — positional servo (system)следя́щая систе́ма с не́сколькими входны́ми возде́йствиями — multi-input servo (system)следя́щая систе́ма с предваре́нием — predictor servo (system)систе́ма слеже́ния — tracking systemсисте́ма слеже́ния по да́льности — range tracking systemсисте́ма слеже́ния по ско́рости измене́ния да́льности — range rate tracking systemсисте́ма сма́зки — lubrication (system)систе́ма сма́зки, принуди́тельная — force(-feed) lubrication (system)систе́ма сма́зки, разбры́згивающая — splash lubrication (system)сма́зочная систе́ма — lubrication (system)систе́ма с мно́гими переме́нными — multivariable systemсисте́ма сниже́ния шу́ма — noise reduction systemсисте́ма с обра́тной свя́зью — feedback systemСо́лнечная систе́ма — solar systemсисте́ма сопровожде́ния — tracking systemсисте́ма со свобо́дными пове́рхностями — unbounded systemсисте́ма с пара́метрами, изменя́ющимися во вре́мени — time variable [time-variant] systemсисте́ма с постоя́нным резерви́рованием — parallel-redundant systemсисте́ма с разделе́нием вре́мени — time-sharing systemсисте́ма с распределё́нными пара́метрами — distributed parameter systemсисте́ма с самоизменя́ющейся структу́рой — self-structuring systemсисте́ма с сосредото́ченными пара́метрами — lumped-parameter [lumped-constant] systemстати́ческая систе́ма — киб. constant-error system; ( в следящих системах) type O servo systemсисте́ма, стати́чески неопредели́мая мех. — statically indeterminate systemсисте́ма, стати́чески определи́мая мех. — statically determinate systemсисте́ма стира́ния ( записи) — erasing systemстохасти́ческая систе́ма — stochastic systemсто́чная систе́ма мор. — deck drain systemсудова́я систе́ма — ship systemсисте́ма с фикси́рованными грани́цами — bounded systemсисте́ма счисле́ния — number(ing) system, notationсисте́ма счисле́ния, восьмери́чная — octal number system, octonary notationсисте́ма счисле́ния, двенадцатери́чная — duodecimal number system, duodecimal notationсисте́ма счисле́ния, двои́чная — binary system, binary notationсисте́ма счисле́ния, двои́чно-десяти́чная — binary-coded decimal system, binary-coded decimal [BCD] notationсисте́ма счисле́ния, девятери́чная — nine number systemсисте́ма счисле́ния, десяти́чная — decimal number system, decimal notationсисте́ма счисле́ния, непозицио́нная — non-positional notationсисте́ма счисле́ния, позицио́нная — positional number notationсисте́ма счисле́ния пути́, возду́шно-до́плеровская навиг. — airborne Doppler navigatorсисте́ма счисле́ния, трои́чная — ternary number system, ternary notationсисте́ма счисле́ния, шестнадцатери́чная — hexadecimal number system, hexadecimal notationтелевизио́нная светокла́панная систе́ма — light-modulator [light-modulating] television systemтелегра́фная многокра́тная систе́ма ( с временным распределением) — time-division multiplex (transmission), time division telegraph systemтелеметри́ческая систе́ма — telemetering systemтелеметри́ческая, промы́шленная систе́ма — industrial telemetering systemтелеметри́ческая, то́ковая систе́ма — current-type telemeterтелеметри́ческая, часто́тная систе́ма — frequency-type telemeterтелефо́нная, автомати́ческая систе́ма — dial telephone systemтелефо́нная систе́ма с ручны́м обслу́живанием — manual-switchboard telephone systemтермодинами́ческая систе́ма — thermodynamic systemтехни́ческая систе́ма (в отличие от естественных, математических и т. п.) — engineering systemсисте́ма тона́льного телеграфи́рования — voice-frequency multichannel systemто́пливная систе́ма — fuel systemто́пливная систе́ма с пода́чей само́тёком — gravity fuel systemтормозна́я систе́ма ( автомобиля) — brake systemтрёхкомпоне́нтная систе́ма — ternary [three-component] systemтрёхпроводна́я систе́ма эл. — three-wire systemтрёхфа́зная систе́ма эл. — three-phase systemтрёхфа́зная систе́ма с глухозаземлё́нной нейтра́лью эл. — solidly-earthed-neutral three-phase systemтрёхфа́зная, симметри́чная систе́ма эл. — symmetrical three-phase systemтрёхфа́зная систе́ма с незаземлё́нной нейтра́лью эл. — isolated-neutral three-phase systemтрю́мная систе́ма мор. — bilge systemсисте́ма тяг — linkageтя́го-дутьева́я систе́ма — draught systemсисте́ма УВД — air traffic control [ATC] systemсисте́ма управле́ния — control systemсисте́ма управле́ния, автомати́ческая — automatic control systemсисте́ма управле́ния без па́мяти — combinational (control) systemсисте́ма управле́ния возду́шным движе́нием — air traffic control [ATC] systemсисте́ма управле́ния произво́дством [предприя́тием], автоматизи́рованная [АСУП] — management information system, MISсисте́ма управле́ния с вычисли́тельной маши́ной — computer control systemсисте́ма управле́ния с па́мятью — sequential (control) systemсисте́ма управле́ния с предсказа́нием — predictor control systemсисте́ма управле́ния технологи́ческим проце́ссом, автоматизи́рованная [АСУТП] — (automatic) process control systemсисте́ма управле́ния, цифрова́я — digital control systemуправля́емая систе́ма ( объект управления) — controlled system, controlled plantуправля́ющая систе́ма ( часть системы управления) — controlling (sub-)systemупру́гая систе́ма ( гравиметра) — elastic systemсисте́ма уравне́ний — set [system] of equations, set of simultaneous equationsсисте́ма уравне́ния объё́ма ( ядерного реактора) — pressurizing systemуравнове́шенная систе́ма — balanced systemусто́йчивая систе́ма — stable systemфа́новая систе́ма мор. — flushing [sewage-disposal] systemсисте́ма физи́ческих величи́н — system of physical quantitiesхи́мико-технологи́ческая систе́ма — chemical engineering systemхими́ческая систе́ма — chemical systemсисте́ма ЦБ-АТС тлф. — dial systemсисте́ма цветно́го телеви́дения, совмести́мая — compatible colour-television systemсисте́ма це́нтра масс — centre-of-mass [centre-of-gravity, centre-of-momentum] systemсисте́ма цифрово́го управле́ния ( не путать с числовы́м управле́нием) — digital control system (not to be confused with numeric control system)систе́ма «челове́к — маши́на» — man-machine systemшарни́рная систе́ма — hinged systemшарни́рно-стержнева́я систе́ма — hinged-rod systemшпре́нгельная систе́ма — strutted [truss] systemсисте́ма эксплуата́ции телефо́нной свя́зи, заказна́я — delay operationсисте́ма эксплуата́ции телефо́нной свя́зи, ско́рая — demand working, telephone traffic on the demand basisэкстрема́льная систе́ма — extremal systemсисте́ма электро́дов ЭЛТ — CRT electrode structureэлектроже́зловая систе́ма ж.-д. — (electric) token systemэлектрохими́ческая систе́ма — electrochemical systemэлектрохими́ческая, необрати́мая систе́ма — irreversible electrochemical systemэлектрохими́ческая, обрати́мая систе́ма — reversible electrochemical systemэлектроэнергети́ческая систе́ма — electric power systemсисте́ма элеме́нтов Менделе́ева, периоди́ческая — Mendeleeff's [Mendeleev's, periodic] law, periodic system, periodic tableсисте́ма элеме́нтов ЦВМ — computer building-block rangeэнергети́ческая систе́ма — power systemэнергети́ческая, еди́ная систе́ма — power gridэнергети́ческая, объединё́нная систе́ма — interconnected power system -
16 generator
1) генератор3) датчик, (первичный) измерительный преобразователь5) генератриса, производящая функция6) вчт. генерирующая программа, генератор•to wind the generator — наматывать обмотку генератора-
hockey stick steam generator
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ac generator
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acetylene generator
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acoustic generator
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acoustic pulse generator
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acyclic generator
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address generator
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airborne ice nuclei generator
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air-cooled generator
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air-gap-conductor generator
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amplidyne generator
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analytical-function generator
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answer generator
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arbitrary-function generator
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arc generator
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arc-welding generator
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artwork generator
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asynchronous generator
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atmospheric steam generator
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audio-frequency generator
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auxiliary generator
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axle generator
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bar generator
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bar-and-dot generator
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bar-dot generator
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base generator
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basic frequency generator
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battery-charging generator
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bell-type generator
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bell generator
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bias generator
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binary generator
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bipolar generator
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bit-rate generator
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blocking generator
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booster generator
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borehole neutron generator
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brushless generator
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brushless salient-pole ac generator
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bulbwater-wheel generator
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bulb generator
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burst generator
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burst-controlled generator
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call generator
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caption generator
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carrier generator
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cascade generator
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character generator
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character-controlled generator
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charging generator
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chip generator
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chirp generator
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chromakey generator
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clock-pulse generator
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clock generator
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closed-cycle MHD generator
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coal fluidized-bed generator
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coaxial noise generator
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code generator
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collector-type generator
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color reference generator
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color-background generator
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color-bar generator
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color-pattern generator
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command generator
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compiler generator
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complex-wave generator
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compound generator
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compound signal generator
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computer-art generator
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constant-potential generator
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contact-type generator
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contact generator
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crossed-field generator
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cross-hatch generator
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current generator
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curve generator
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cylindrical-rotor generator
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data generator
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dc generator
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degaussing generator
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delay generator
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digital effects generator
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digitally tunable generator
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digit-symbol display generator
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digit-symbol generator
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dipping-type generator
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dipping generator
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direct-expansion ice generator
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display generator
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display vector generator
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document generator
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dot generator
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dot-matrix character generator
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double-current generator
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double-effect generator
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drive-pulse generator
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driving generator
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drooping characteristic generator
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drop generator
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dry residue-type generator
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dry residue generator
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electric generator
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electric steam generator
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electrochemical generator
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electrodynamic vibration generator
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electrolytic generator
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electromagnetic vibration generator
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electron-beam pattern generator
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electronically controlled generator
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electronic controlled generator
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electrostatic generator
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emergency generator
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encapsulated hydraulic turbine generator
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explicit-pole generator
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field generator
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fine triangular waveform generator
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fixed range mark generator
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fixed-format dot character generator
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fixed-format dot generator
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fluid pulse generator
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flying-spot color-signal generator
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flying-spot video generator
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foam generator
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foot-operated generator
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fork generator
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fourpolar generator
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frame generator
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free-running blocking generator
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frequency-modulated generator
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fuel-cell generator
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fully water-cooled turbine generator
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function generator
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gas generator
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gas target neutron generator
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gas-turbine driven generator
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gate-pulse generator
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gate generator
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Gaussian noise generator
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gear generator
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general-purpose function generator
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gold-device pattern generator
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graphic generator
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grating generator
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Hall generator
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harbor generator
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harmonic generator
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heteropolar generator
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high-frequency generator
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high-voltage generator
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homopolar generator
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horizontal deflection generator
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horizontal generator
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horizontal sweep generator
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horizontal-bar generator
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horizontal-shaft generator
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hot-air generator
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hot-water generator
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house generator
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hydraulic turbine generator
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hydraulic vibration generator
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hydroelectric generator
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hydrogen filled water-cooled turbine generator
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hydrogen-cooled generator
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ice generator
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ice-forming aerosol generator
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impact-excited generator
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implicit-pole generator
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impulse generator
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impulse-noise generator
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inclined-plate wave generator
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induction generator
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inductor-type generator
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inductor generator
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insertion signal generator
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integrated drive generator
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interpole generator
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isotopic power generator
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key-pulse generator
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klystron generator
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laser artwork generator
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laser character generator
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lightning generator
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line generator
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linear sweep generator
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liquid nitrogen generator
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list generator
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look-ahead carry generator
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low-frequency generator
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low-voltage generator
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macro generator
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magnetoelectric generator
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magneto generator
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magnetonydrodynamic generator
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magnetostriction generator
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magnetostrictive vibration generator
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major-state generator
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manual number generator
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marker generator
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mask pattern generator
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mask generator
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master clock generator
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master time code generator
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mechanical ice generator
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mismatched generator
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mobile call generator
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mobile generator
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modulation generator
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molecular generator
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monodisperse aerosol generator
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motion command generator
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motion generator
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motor generator
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multifrequency generator
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multifrequency-burst generator
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multilevel interconnection generator
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multioperator welding generator
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multiple channel generator
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narrow strobe-pulse generator
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natural function law generator
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natural function generator
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neutron generator
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noise generator
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noise-current generator
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noise-spectrum generator
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noise-voltage generator
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nonsalient-pole generator
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notch generator
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number generator
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off-on wave generator
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once-through steam generator
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one shot generator
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optical generator
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parallel generator
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pattern generator
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peak generator
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permanent-magnet generator
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phase-locked generator
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photoelectric generator
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picture generator
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piezoelectric vibration generator
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pink noise generator
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plasma generator
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polyphase generator
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portable generator
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pressure generator
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profile generator
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program generator
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programmable clock generator
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propulsion generator
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pseudorandom noise generator
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pseudorandom number generator
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pseudorandom sequence generator
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pulse generator
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pulsed generator
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pulse-series generator
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quench generator
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radio-frequency generator
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ramp generator
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random-noise generator
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random-number generator
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range-marker generator
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raster signal generator
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reaction-type vibration generator
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redundancy check generator
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reference frequency generator
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reference generator
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reference smoke generator
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regenerative generator
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reheat steam generator
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relaxation generator
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reluctance generator
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report program generator
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resonant vibration generator
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reversed polarity generator
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ringing generator
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rotary pulse generator
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routine generator
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salient-pole generator
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sampling-pulse generator
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sawtooth generator
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scanning generator
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scan generator
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scintillation noise generator
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screen generator
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seismic-wave generator
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self-contained ice generator
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self-excited generator
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self-excited induction generator
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selsyn generator
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separately excited generator
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series generator
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service generator
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shading generator
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shaft-driven generator
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shaft generator
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shunts-wound generator
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shunts generator
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signal generator
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simulation generator
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single sideband generator
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single-line turbine generator
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single-phase generator
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single-shaft turbine generator
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slave generator
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software simulator pattern generator
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solar generator
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solid rotor generator
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spark generator
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special-effects generator
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special-effect generator
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speech generator
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speed governor axle generator
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spot wobbler generator
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spot wobble generator
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sprocket pulse generator
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square-law generator
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square-wave generator
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staircase generator
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standard-signal generator
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standby generator
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stationary generator
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steam generator
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steam-gas generator
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step generator
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step-wave generator
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straight bevel gear generator
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straight-tube steam generator
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stress-wave generator
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stroke-character generator
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subaudio-frequency generator
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subcritical steam generator
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submerged generator
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superconducting generator
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supersonic generator
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surge generator
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sweep generator
-
swept-frequency generator
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symbol generator
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sync generator
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synchro generator
-
synchronization pulse generator
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synchronized trigger generator
-
synchronizing generator
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synchronizing-waveform generator
-
synchronous generator
-
tachometer generator
-
tandem-pulse generator
-
target generator
-
TC generator
-
television test-pattern generator
-
television-picture generator
-
television generator
-
terrestrial solar generator
-
test-line generator
-
test-pattern generator
-
test-tone generator
-
text generator
-
thermoelectric generator
-
Thevenin's generator
-
three-phase generator
-
tidal generator
-
time-base generator
-
time-code generator
-
time-mark generator
-
time-pulse generator
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timing-pulse generator
-
timing generator
-
tone generator
-
tone-burst generator
-
torque command generator
-
track generator
-
train heating generator
-
tray-type acetylene generator
-
triangle generator
-
trigger generator
-
triggered blocking generator
-
tube generator
-
turbine-driven generator
-
turbine generator
-
twice-horizontal frequency generator
-
ultrasonic generator
-
umbrella-type water-wheel generator
-
umbrella water-wheel generator
-
unbalanced mass vibration generator
-
undercar generator
-
unipolar generator
-
Van de Graaff generator
-
Van der Pol generator
-
variable-frequency generator
-
variable-pulse generator
-
vector generator
-
vertical deflection generator
-
vertical generator
-
vertical sweep generator
-
vertical-bar generator
-
vertical-shaft hydro generator
-
vibration generator
-
video effects generator
-
vinegar generator
-
visual alignment generator
-
voltage generator
-
voltage-controlled generator
-
vortex generator
-
water-cooled turbine generator
-
water-displacement contact-type generator
-
water-displacement contact generator
-
water-gas generator
-
water-recession generator
-
water-to-carbide-type generator
-
water-to-carbide generator
-
water-turbine driven generator
-
water-turbine generator
-
water-wheel type generator
-
wave generator
-
waveform generator
-
wave-powered generator
-
welding generator
-
white noise generator
-
wide strobe-pulse generator
-
wind-driven generator
-
window generator
-
wind-powered generator
-
yeast generator -
17 differential
дифференциал; дифференциальный механизм; дифференциальная передача; перепад (давления, температуры); разность (давлений, температур); порог срабатывания (фотоэлектрической системы); II дифференциальный; разностный- differential absorption - differential absorption coefficient - differential absorption lidar - differential absorption method - differential absorption spectroscopy - differential action - differential adjusting wrench - differential aeration - differential aeration corrosion - differential amplifier - differential amplitude discriminator - differential analyser - differential annealing - differential band drive - differential barometer- bearer- differential bevel pinion - differential cable mechanism - differential cage - differential calculus - differential calorimeter - differential cam mechanism - differential capacitance - differential capacitivity - differential capacitor - differential change gear - differential change gear train - differential comparator - differential compound excitation - differential compounding - differential computing potentiometer - differential condensation - differential conductivity - differential connection - differential constraint - differential control - differential control crank - differential control method - differential corrosion - differential coupling - differential crown wheel - differential current protection - differential curve - differential cylinder - differential delay - differential detector - differential diffraction factor - differential distillation - differential drive - differential dynamometer - differential edge-runners - differential engine - differential fault - differential fill-up shoe - differential gear - differential gear train - differential head - differential head meter - differential heating - differential hold - differential lock - differential lock clutch - differential lock valve - differential locking device - differential locking jaw - differential master gear - differential motion - differential of function - differential phase - differential pinion - differential pinion shaft - differential piston - differential planetary gear reduction - differential pressure - differential pressure gauge - differential pressure control valve - differential pressure pickup - differential pressure valve - differential pulley - differential pulley block - differential rate - differential ring gear - differential rolling bit - differential screw - differential screw coupling - differential screw jack - differential separation - differential side gear - differential spider - differential spider pinion - differential transmission - differential valve - differential weight indicator - differential winding - bell-type differential pressure gage - cooling differential - cross-axle differential - cylindrical gear differential - double reduction differential - exact differential - fixed differential - gearless differential - harmonic differential - heat differential - high-traction differential - inexact differential - inter-axle differential - interior differential needle valve - limited slip differential - limited-slip differential gear - linear differential - lock differential link - locking differential - master differential - mechanical differential - nonequalizing differential - ordinary differential - partial differential - pitch line differential - planetary differential - power-dividing differential - power-proportioning differential - pressure differential - pressure differential unloading - pressure-lubricated differential - quadratic differential - rack-type differential - rear-axle differential - remote differential pressure gage - remote-control differential pressure gage - screw differential - self-acting differential pressure regulator - self-locking differential - spur differential - spur gear differential - time differential - torque proportioning differential - total differential - transverse differential protection - viscous differential -
18 recorder
1) устройство записи; регистрирующее устройство, регистратор2) рекордер4) полигр. наборно-кодирующий аппарат•-
aircraft recorder
-
analog data recorder
-
analog recorder
-
audio magnetic recorder
-
audio recorder
-
automatic cloud-amount recorder
-
automatic recorder
-
automatic water-stage recorder
-
cartridge recorder
-
casette video tape recorder
-
chart recorder
-
cloud-base recorder
-
cockpit voice recorder
-
color-under video tape recorder
-
combination camera recorder
-
compass data recorder
-
component digital video tape recorder
-
consumer recorder
-
continuous recorder
-
continuous-field video tape recorder
-
course recorder
-
data recorder
-
demand recorder
-
depth recorder
-
deviation recorder
-
digital audio recorder
-
digital video tape recorder
-
disk recorder
-
disturbance recorder
-
drilling recorder
-
drill-time recorder
-
editing video tape recorder
-
electromechanical recorder
-
endless loop recorder
-
event recorder
-
facsimile recorder
-
film recorder
-
flat-bed recorder
-
flight data recorder
-
flight recorder
-
flight test recorder
-
float-level recorder
-
flow recorder
-
four-head video tape recorder
-
four-head recorder
-
gamma-ray thickness recorder
-
heading recorder
-
helical-scan video tape recorder
-
helical video tape recorder
-
heterodyne video tape recorder
-
horizontal-drum recorder
-
instrumentation recorder
-
ionospheric recorder
-
level recorder
-
lightning recorder
-
lightning-stroke recorder
-
log recorder
-
magnetic recorder
-
magnetic-tape recorder
-
maintenance recorder
-
mastering video tape recorder
-
master video tape recorder
-
mechanical recorder
-
mechanical strain recorder
-
microfilm recorder
-
mileage recorder
-
monitor recorder
-
motion recorder
-
multicassette video tape recorder
-
multichannel recorder
-
multiple-trace recorder
-
multipoint recorder
-
multitrack audio tape recorder
-
nonsegmented video tape recorder
-
optical recorder
-
pen recorder
-
penetration recorder
-
pitch recorder
-
playback video tape recorder
-
precipitation recorder
-
profile recorder
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pulse recorder
-
quadruplex video tape recorder
-
quad video tape recorder
-
record video tape recorder
-
recorder tilting bucket recorder
-
reel-to-reel recorder
-
reel recorder
-
rolling recorder
-
scanning recorder
-
segmented video tape recorder
-
seismic recorder
-
slow-motion disk recorder
-
sound recorder
-
stability recorder
-
stereo tape recorder
-
strip chart recorder
-
sunshine recorder
-
surge-voltage recorder
-
swell recorder
-
sync recorder
-
tank recorder
-
tape recorder
-
television film recorder
-
temperature recorder
-
thunderstorm recorder
-
tide level recorder
-
train operation recorder
-
transient recorder
-
type B recorder
-
type C recorder
-
U-format recorder
-
video cassette recorder
-
video disk recorder
-
video playback audio recorder
-
video recorder
-
video tape recorder
-
visibility recorder
-
water-flow recorder
-
water-level recorder
-
wave recorder
-
wire recorder
-
xerographic recorder
-
X-Y recorder -
19 Aspinall, Sir John Audley Frederick
[br]b. 25 August 1851 Liverpool, Englandd. 19 January 1937 Woking, England[br]English mechanical engineer, pioneer of the automatic vacuum brake for railway trains and of railway electrification.[br]Aspinall's father was a QC, Recorder of Liverpool, and Aspinall himself became a pupil at Crewe Works of the London \& North Western Railway, eventually under F.W. Webb. In 1875 he was appointed Manager of the works at Inchicore, Great Southern \& Western Railway, Ireland. While he was there, some of the trains were equipped, on trial, with continuous brakes of the non-automatic vacuum type. Aspinall modified these to make them automatic, i.e. if the train divided, brakes throughout both parts would be applied automatically. Aspinall vacuum brakes were subsequently adopted by the important Great Northern, Lancashire \& Yorkshire, and London \& North Western Railways.In 1883, aged only 32, Aspinall was appointed Locomotive Superintendent of the Great Southern \& Western Railway, but in 1886 he moved in the same capacity to the Lancashire \& Yorkshire Railway, where his first task was to fit out the new works at Horwich. The first locomotive was completed there in 1889, to his design. In 1899 he introduced a 4–4–2, the largest express locomotive in Britain at the time, some of which were fitted with smokebox superheaters to Aspinall's design.Unusually for an engineer, in 1892 Aspinall was appointed General Manager of the Lancashire \& Yorkshire Railway. He electrified the Liverpool-Southport line in 1904 at 600 volts DC with a third rail; this was an early example of main-line electrification, for it extended beyond the Liverpool suburban area. He also experimented with 3,500 volt DC overhead electrification of the Bury-Holcombe Brook branch in 1913, but converted this to 1,200 volts DC third rail to conform with the Manchester-Bury line when this was electrified in 1915. In 1918 he was made a director of the Lancashire \& Yorkshire Railway.[br]Principal Honours and DistinctionsKnighted 1917. President, Institution of Mechanical Engineers 1909. President, Institution of Civil Engineers 1918.Further ReadingH.A.V.Bulleid, 1967, The Aspinall Era, Shepperton: Ian Allan (provides a good account of Aspinall and his life's work).C.Hamilton Ellis, 1958, Twenty Locomotive Men, Shepperton: Ian Allan, Ch. 19 (a good brief account).PJGRBiographical history of technology > Aspinall, Sir John Audley Frederick
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20 system
system of axes3-component LDV system3-D LDV system4-D system4-D flight-management system4-D guidance systemAC electrical systemactuation systemaerial delivery systemaerostat systemAEW systemafterburning control systemAI-based expert systemaileron-to-rudder systemair bleed offtake systemair cushion systemair cycle systemair data systemair defence systemair induction systemair refueling systemair traffic control systemair-combat advisory systemair-conditioning systemair-path axis systemair-turbine starting systemairborne early warning systemaircooling systemaircraft reference axis systemaircraft weight-and-balance measuring systemaircraft-autopilot systemaircraft-based systemaircraft-bifilar-pendulum systemaircraft-carried earth axis systemaircraft-carried normal earth axis systemaircrew escape systemairfield lighting control systemairframe/rotor systemairspeed systemalcohol-wash systemalignment control systemall-electronic systemall-weather mission systemaltitude loss warning systemangle-of-attack command systemanti-collision systemanti-g systemantitorque systemanti-icing systemantiskid systemarea-navigation systemARI systemartificial feel systemartificial intelligence-based expert systemartificially augmented flight control systemATC systemattitude and heading reference systemaudio systemaudiovisual systemauto-diagnosis systemauto-hover systemautolanding systemautomatic cambering systemautomatic trim systemautostabilization systemautotrim systemaxis systemB systembalance-fixed coordinate systembase-excited systembasic axis systembeam-foundation systembifilar pendulum suspension systembladder systemblowing systemblowing boundary layer control systemblown flap systembody axis systembody axis coordinate systembody-fitted coordinate systembody-fixed reference systemboom systemboosted flight control systembraking systembreathing systembuddy-buddy refuelling systemcabin pressurization systemcable-mount systemCAD systemcanopy's jettison systemcardiovascular systemcargo loading systemcargo-handling systemcarrier catapult systemcartesian axis systemCat III systemcentral nervous systemCGI systemcirculating oil systemclosed cooling systemclosed-loop systemcockpit systemcockpit management systemcollision avoidance systemcombined cooling systemcommand-by-voice systemcommand/vehicle systemcommercial air transportation systemcompensatory systemcomputer-aided design systemcomputer-assisted systemcomputer-generated image systemcomputer-generated visual systemconcentrated-mass systemconflict-alert systemconservative systemconstant bandwidth systemconstant gain systemconsultative expert systemcontrol systemcontrol augmented systemcontrol loader systemcooling systemcoordinate systemcounterstealth systemcoupled systemcoupled fire and flight-control systemcovert mission systemcrew systemscueing systemcurvilinear coordinate systemdamped systemdata systemdata acquisition systemdata handling systemdata transfer systemdata-gathering systemDC electrical systemdecision support systemdefensive avionics systemdeicing systemdemisting systemdeparture prevention systemdeterministic systemdual-dual redundant system4-D navigation system6-DOF motion systemdiagnosable systemdial-a-flap systemdirect impingement starting systemdisplacement control systemdisplay systemdisplay-augmented systemdivergent systemDLC systemdogfight systemdoor-to-door systemDoppler ground velocity systemdouble-balance systemdrive systemdrive train/rotor systemdry air refueling systemdual-field-of-view systemdual-wing systemdynamic systemearly-warning systemEarth-centered coordinate systemearth-fixed axis systemearth/sky/horizon projector systemejection systemejection display systemejection seat escape systemejection sequence systemejector exhaust systemejector lift systemelection safety systemelectric starting systemelectro-expulsive deicing systemelectro-impulse deicing systemelectro-vibratory deicing systemelectronic flight instrumentation systemElint systememergency power systememitter locator systemEMP-protected systemengine monitoring systemengine-propeller systemengine-related systemenhanced lift systemenvelope-limiting systemenvironmental control systemescape systemexcessive pitch attitude warning systemexhaust systemFADEC systemfault-tolerant systemFBW systemfeathering systemfeedback systemfeel systemfin axis systemfire detection systemfire suppression systemfire-extinguishing systemfire-protection systemfive-point restraint systemfixed-structure control systemflap systemflap/slat systemflash-protection systemflexible manufacturing systemflight control systemflight control actuation systemflight director systemflight inspection systemflight management systemflight path systemflight path axis systemflight test systemflight-test instrumentation systemflotation systemfluid anti-icing systemflutter control systemflutter margin augmentation systemflutter suppression systemfluttering systemfly-by-light systemfly-by-light control systemfly-by-wire systemfly-by-wire/power-by-wire control systemfoolproof systemforce-excited systemforce-feel systemforward vision augmentation systemfuel conservative guidance systemfuel management systemfuel transfer systemfull-vectoring systemfull-authority digital engine control systemfull-motion systemfull-state systemfull-time systemfully articulated rotor systemfuselage axis systemg-command systemg-cueing systemg-limiting systemgas generator control systemgas turbine starting systemglobal positioning systemgoverning systemground collision avoidance systemground proximity warning systemground-axes systemground-fixed coordinate systemground-referenced navigation systemgust alleviation systemgust control systemgyroscopic systemgyroscopically coupled systemhalon fire-extinguishing systemhalon gas fire-fighting systemhands-off systemhead-aimed systemheadup guidance systemhelmet pointing systemhelmet-mounted visual systemhierarchical systemhigh-damping systemhigh-authority systemhigh-lift systemhigh-order systemhigh-pay-off systemhigh-resolution systemhigher harmonic control systemhose-reel systemhot-gas anti-icing systemhub plane axis systemhub plane reference axis systemhub-fixed coordinate systemhydraulic systemhydraulic starting systemhydropneumatic systemhydrostatic motion systemhysteretic systemice-protection systemicing cloud spray systemicing-protection systemidentification friend or foe systemimage generator systemin-flight entertainment systemincidence limiting systeminert gas generating systeminertial coordinate systeminertial navigation systeminertial reference systeminfinite-dimensional systeminformation management systeminlet boundary layer control systeminlet control systeminput systeminstruction systeminstrument landing systeminstrumentation systemintelligence systemintelligent systeminterconnection systemintermediate axis systemintrusion alarm systemintrusion detection systeminverted fuel systemlanding guidance systemlarge-travel motion systemlaser-based visual systemlateral attitude control systemlateral control systemlateral feel systemlateral seat restraint systemlateral-directional stability and command augmentation systemlead compensated systemleft-handed coordinate systemleg restraint systemlife support systemliferaft deployment systemlift-distribution control systemlighter-than-air systemlightly damped systemlightning protection systemlightning sensor systemlightning warning systemlimited-envelope flight control systemlinear vibrating systemliquid oxygen systemload control systemload indication systemlocal-horizon systemloom systemlow-damping systemlow-order systemLQG controlled systemlubrication systemlumped parameter systemMach number systemmain transmission systemmaintenance diagnostic systemmaintenance record systemman-in-the-loop systemman-machine systemmaneuver demand systemmaneuvering attack systemmass-spring-dashpot systemmass-spring-damper systemmast-mounted sight systemmechanical-hydraulic flight control systemmicrowave landing systemMIMO systemmine-sweeping systemmissile systemmissile-fixed systemmission-planning systemmobile aircraft arresting systemmodal cancellation systemmodal suppression systemmode-decoupling systemmodel reference systemmodel-based visual systemmodel-following systemmodelboard systemmolecular sieve oxygen generation systemmonopulse systemmotion systemmotion generation systemmulti-input single-output systemmulti-input, multi-output systemmultimode systemmultibody systemmultidegree-of-freedom systemmultiloop systemmultiple-input single output systemmultiple-input, multiple-output systemmultiple-loop systemmultiple-redundant systemmultiply supported systemmultishock systemmultivariable systemnavigation management systemnavigation/attack systemnavigation/bomb systemNDT systemneuromuscular systemnight/dusk visual systemportable aircraft arresting systemnitrogen inerting systemno-tail-rotor systemnonminimum phase systemnonoscillatory systemnonconservative systemnormal earth-fixed axis systemNotar systemnozzle control systemnuclear-hardened systemobserver-based systemobstacle warning systemoil systemon-board inert gas generation systemon-board maintenance systemon-board oxygen generating systemon-off systemone degree of freedom systemone-shot lubrication systemopen cooling systemopen seat escape systemopen-loop systemoperability systemoptic-based control systemoptimally controlled systemorthogonal axis systemoxygen generation systemparachute systempartial vectoring systempartial vibrating systemperformance-seeking systemperturbed systempilot reveille systempilot vision systempilot-aircraft systempilot-aircraft-task systempilot-in-the-loop systempilot-manipulator systempilot-plus-airplane systempilot-vehicle-task systempilot-warning systempilot/vehicle systempitch change systempitch compensation systempitch stability and command augmentation systempitch rate systempitch rate command systempitch rate flight control systempneumatic deicing systempneumatic ice-protection systempneumodynamic systemposition hold systempower systempower-assisted systempower-boosted systempowered high-lift systempowered-lift systemprecognitive systempressurization systempreview systemprobabilistically diagnosable systemprobe refuelling systempronated escape systempropeller-fixed coordinate systempropulsive lift systemproximity warning systempursuit systempush-rod control systemquantized systemrandom systemrating systemreconfigurable systemrectangular coordinate systemreduced-gain systemreference axis systemrefuelling systemremote augmentor lift systemremote combustion systemresponse-feedback systemrestart systemrestraint systemrestructurable control systemretraction systemride-control systemride-quality systemride-quality augmentation systemride-smoothing systemright-handed axis systemright-handed coordinate systemrigid body systemrobotic refueling systemrod-mass systemroll augmentation systemroll rate command systemrotating systemrotor systemrotor isolation systemrotor-body systemrotor-wing lift systemroute planner systemrudder trim systemrudder-augmentation systemsampled-data systemscheduling systemschlieren systemsea-based systemseat restraint systemseatback video systemself-adjoint systemself-contained starting systemself-diagnosable systemself-excited systemself-repairing systemself-sealing fuel systemself-tuning systemshadow-mask systemshadowgraph systemship-fixed coordinate systemshock systemshort-closed oil systemsighting systemsimulation systemsimulator-based learning systemsingle degree of freedom systemsingle-input multiple-output systemsingularly perturbed systemsituational awareness systemsix-axis motion systemsix-degree-of-freedom motion systemsix-puck brake systemski-and-wheel systemskid-to-turn systemsnapping systemsoft mounting systemsoft ride systemsound systemspeed-stability systemspherical coordinate systemspin recovery systemspin-prevention systemspring-mass-dashpot systemstability and control augmentation systemstability augmentation systemstability axis coordinate systemstability enhancement systemstall detection systemstall inhibitor systemstall protection systemstall warning systemstarting systemstealth systemstochastic systemstorage and retrieval systemstore alignment systemstores management systemstrap-down inertial systemstructural systemstructural-mode compensation systemstructural-mode control systemstructural-mode suppression systemSTT systemsuppression systemsuspension systemtactile sensory systemtail clearance control systemtail warning systemtask-tailored systemterrain-aided navigation systemterrain-referencing systemtest systemthermal control systemthermal protection systemthreat-warning systemthree-axis augmentation systemthree-body tethered systemthree-control systemthree-gyro systemthrough-the-canopy escape systemthrust modulation systemthrust-vectoring systemtilt-fold-rotor systemtime-invariant systemtime-varying systemtip-path-plane coordinate systemtorque command/limiting systemtractor rocket systemtrailing cone static pressure systemtraining systemtrajectory guidance systemtranslation rate command systemtranslational acceleration control systemtrim systemtrim tank systemtriple-load-path systemtutoring systemtwin-dome systemtwo degree of freedom systemtwo-body systemtwo-input systemtwo-input two-output systemtwo-pod systemtwo-shock systemtwo-step shock absorber systemunpowered flap systemunpowered high-lift systemutility services management systemvapor cycle cooling systemvariable feel systemvariable stability systemvariable structure systemvestibular sensory systemvibrating systemvibration isolation systemvibration-control systemvibration-damping systemvideo-disc-based visual systemvisor projection systemvisual systemvisual display systemvisual flying rules systemvisual sensory systemvisual simulation systemvisually coupled systemvoice-activated systemvortex systemvortex attenuating systemVTOL control systemwake-imaging systemwarning systemwater injection cooling systemwater-mist systemwater-mist spray systemweather systemwheel steering systemwide angle visual systemwind coordinate systemwind shear systemwind-axes systemwind-axes coordinate systemwind-fixed coordinate systemwing axis systemwing flap systemwing sweep systemwing-load-alleviation systemwing-mounted systemwing/propulsion systemwiring systemyaw vane system
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