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1 CBL
1) Общая лексика: (competency-based learning квалификационное обучение (узкое применение)2) Военный термин: conceptual baseline4) Железнодорожный термин: Conemaugh and Black Lick Railroad5) Сокращение: Computer Based Language6) Университет: Computational Biology Lab, Computer Based Laboratory7) Вычислительная техника: Computer Based Learning, computer-based learning8) Нефть: акустический цементомер (cement-bond log)9) Банковское дело: Центральный банк Люксембурга, Central Bank of Luxembourg10) Геофизика: контроль качества цементирования11) Деловая лексика: Commercial Bill of Lading, Common Business Library12) Бурение: цементограмма (cement bond log), цементометрия (cement bond log), cement bond log (an acoustic device for determining the condition of the bond between cement and hole, and cement and casing), (cement bond log) АК (акустичекий каротаж для определения качества цементирования)13) Глоссарий компании Сахалин Энерджи: cement bond logger, АЦМ, ОЦК (определение цементного кольца, cement bond log), cement bond log (акустический цементомер)14) Нефтегазовая техника каротажная диаграмма качества цементации скважины (cement-bond log)15) Менеджмент: contract baseline16) Образование: Check Back Later17) Сахалин Р: cement bond log18) Океанография: Convective Boundary Layer19) Сахалин Ю: cement bond log акустический цементомер20) Расширение файла: Cobol language source code file21) Нефть и газ: АКЦ (Schlumberger)22) NYSE. C B L & Associates Properties, Inc.23) Аэропорты: Ciudad Bolivar, Venezuela24) Хобби: Crazy Basketball Lover -
2 Cbl
1) Общая лексика: (competency-based learning квалификационное обучение (узкое применение)2) Военный термин: conceptual baseline4) Железнодорожный термин: Conemaugh and Black Lick Railroad5) Сокращение: Computer Based Language6) Университет: Computational Biology Lab, Computer Based Laboratory7) Вычислительная техника: Computer Based Learning, computer-based learning8) Нефть: акустический цементомер (cement-bond log)9) Банковское дело: Центральный банк Люксембурга, Central Bank of Luxembourg10) Геофизика: контроль качества цементирования11) Деловая лексика: Commercial Bill of Lading, Common Business Library12) Бурение: цементограмма (cement bond log), цементометрия (cement bond log), cement bond log (an acoustic device for determining the condition of the bond between cement and hole, and cement and casing), (cement bond log) АК (акустичекий каротаж для определения качества цементирования)13) Глоссарий компании Сахалин Энерджи: cement bond logger, АЦМ, ОЦК (определение цементного кольца, cement bond log), cement bond log (акустический цементомер)14) Нефтегазовая техника каротажная диаграмма качества цементации скважины (cement-bond log)15) Менеджмент: contract baseline16) Образование: Check Back Later17) Сахалин Р: cement bond log18) Океанография: Convective Boundary Layer19) Сахалин Ю: cement bond log акустический цементомер20) Расширение файла: Cobol language source code file21) Нефть и газ: АКЦ (Schlumberger)22) NYSE. C B L & Associates Properties, Inc.23) Аэропорты: Ciudad Bolivar, Venezuela24) Хобби: Crazy Basketball Lover -
3 cbl
1) Общая лексика: (competency-based learning квалификационное обучение (узкое применение)2) Военный термин: conceptual baseline4) Железнодорожный термин: Conemaugh and Black Lick Railroad5) Сокращение: Computer Based Language6) Университет: Computational Biology Lab, Computer Based Laboratory7) Вычислительная техника: Computer Based Learning, computer-based learning8) Нефть: акустический цементомер (cement-bond log)9) Банковское дело: Центральный банк Люксембурга, Central Bank of Luxembourg10) Геофизика: контроль качества цементирования11) Деловая лексика: Commercial Bill of Lading, Common Business Library12) Бурение: цементограмма (cement bond log), цементометрия (cement bond log), cement bond log (an acoustic device for determining the condition of the bond between cement and hole, and cement and casing), (cement bond log) АК (акустичекий каротаж для определения качества цементирования)13) Глоссарий компании Сахалин Энерджи: cement bond logger, АЦМ, ОЦК (определение цементного кольца, cement bond log), cement bond log (акустический цементомер)14) Нефтегазовая техника каротажная диаграмма качества цементации скважины (cement-bond log)15) Менеджмент: contract baseline16) Образование: Check Back Later17) Сахалин Р: cement bond log18) Океанография: Convective Boundary Layer19) Сахалин Ю: cement bond log акустический цементомер20) Расширение файла: Cobol language source code file21) Нефть и газ: АКЦ (Schlumberger)22) NYSE. C B L & Associates Properties, Inc.23) Аэропорты: Ciudad Bolivar, Venezuela24) Хобби: Crazy Basketball Lover -
4 CBL
1. cement bond log - акустический контроль качества цементирования; акустический цементомер; определение цементного кольца (ОЦК); показания акустического цементомера; цементограмма; цементометрия;2. Chesapeake Bay Laboratory - лаборатория Чесапик Бей;3. Chesapeake Biological Laboratory - биологическая лаборатория Чесапик Бей;4. computer-based learning - автоматизированное обучение; компьютерное обучение -
5 Forrester, Jay Wright
SUBJECT AREA: Electronics and information technology[br]b. 14 July 1918 Anselmo, Nebraska, USA[br]American electrical engineer and management expert who invented the magnetic-core random access memory used in most early digital computers.[br]Born on a cattle ranch, Forrester obtained a BSc in electrical engineering at the University of Nebraska in 1939 and his MSc at the Massachusetts Institute of Technology (MIT) in Cambridge, Massachusetts, where he remained to teach and carry out research. Becoming interested in computing, he established the Digital Computer Laboratory at MIT in 1945 and became involved in the construction of Whirlwind I, an early general-purpose computer completed in March 1951 and used for flight-simulation by the US Army Air Force. Finding the linear memories then available for storing data a major limiting factor in the speed at which computers were able to operate, he developed a three-dimensional store based on the binary switching of the state of small magnetic cores that could be addressed and switched by a matrix of wires carrying pulses of current. The machine used parallel synchronous fixed-point computing, with fifteen binary digits and a plus sign, i.e. 16 bits in all, and contained 5,000 vacuum tubes, eleven semiconductors and a 2 MHz clock for the arithmetic logic unit. It occupied a two-storey building and consumed 150kW of electricity. From his experience with the development and use of computers, he came to realize their great potential for the simulation and modelling of real situations and hence for the solution of a variety of management problems, using data communications and the technique now known as interactive graphics. His later career was therefore in this field, first at the MIT Lincoln Laboratory in Lexington, Massachusetts (1951) and subsequently (from 1956) as Professor at the Sloan School of Management at the Massachusetts Institute of Technology.[br]Principal Honours and DistinctionsNational Academy of Engineering 1967. George Washington University Inventor of the Year 1968. Danish Academy of Science Valdemar Poulsen Gold Medal 1969. Systems, Man and Cybernetics Society Award for Outstanding Accomplishments 1972. Computer Society Pioneer Award 1972. Institution of Electrical Engineers Medal of Honour 1972. National Inventors Hall of Fame 1979. Magnetics Society Information Storage Award 1988. Honorary DEng Nebraska 1954, Newark College of Engineering 1971, Notre Dame University 1974. Honorary DSc Boston 1969, Union College 1973. Honorary DPolSci Mannheim University, Germany. Honorary DHumLett, State University of New York 1988.Bibliography1951, "Data storage in three dimensions using magnetic cores", Journal of Applied Physics 20: 44 (his first description of the core store).Publications on management include: 1961, Industrial Dynamics, Cambridge, Mass.: MIT Press; 1968, Principles of Systems, 1971, Urban Dynamics, 1980, with A.A.Legasto \& J.M.Lyneis, System Dynamics, North Holland. 1975, Collected Papers, Cambridge, Mass.: MIT.Further ReadingK.C.Redmond \& T.M.Smith, Project Whirlwind, the History of a Pioneer Computer (provides details of the Whirlwind computer).H.H.Goldstine, 1993, The Computer from Pascal to von Neumann, Princeton University Press (for more general background to the development of computers).Serrell et al., 1962, "Evolution of computing machines", Proceedings of the Institute ofRadio Engineers 1,047.M.R.Williams, 1975, History of Computing Technology, London: Prentice-Hall.See also: Burks, Arthur Walter; Goldstine, Herman H.; Wilkes, Maurice Vincent; Williams, Sir Frederic CallandKF -
6 Goldstine, Herman H.
SUBJECT AREA: Electronics and information technology[br]b. 13 September 1913 USA[br]American mathematician largely responsible for the development of ENIAC, an early electronic computer.[br]Goldstine studied mathematics at the University of Chicago, Illinois, gaining his PhD in 1936. After teaching mathematics there, he moved to a similar position at the University of Michigan in 1939, becoming an assistant professor. After the USA entered the Second World War, in 1942 he joined the army as a lieutenant in the Ballistic Missile Research Laboratory at the Aberdeen Proving Ground in Maryland. He was then assigned to the Moore School of Engineering at the University of Pennsylvania, where he was involved with Arthur Burks in building the valve-based Electronic Numerical Integrator and Computer (ENIAC) to compute ballistic tables. The machine was completed in 1946, but prior to this Goldstine had met John von Neumann of the Institute for Advanced Studies (IAS) at Princeton, New Jersey, and active collaboration between them had already begun. After the war he joined von Neumann as Assistant Director of the Computer Project at the Institute of Advanced Studies, Princeton, becoming its Director in 1954. There he developed the idea of computer-flow diagrams and, with von Neumann, built the first computer to use a magnetic drum for data storage. In 1958 he joined IBM as Director of the Mathematical Sciences Department, becoming Director of Development at the IBM Data Processing Headquarters in 1965. Two years later he became a Research Consultant, and in 1969 he became an IBM Research Fellow.[br]Principal Honours and DistinctionsGoldstine's many awards include three honorary degrees for his contributions to the development of computers.Bibliography1946, with A.Goldstine, "The Electronic Numerical Integrator and Computer (ENIAC)", Mathematical Tables and Other Aids to Computation 2:97 (describes the work on ENIAC).1946, with A.W.Burks and J.von Neumann, "Preliminary discussions of the logical design of an electronic computing instrument", Princeton Institute for Advanced Studies.1972, The Computer from Pascal to von Neumann, Princeton University Press.1977, "A brief history of the computer", Proceedings of the American Physical Society 121:339.Further ReadingM.Campbell-Kelly \& M.R.Williams (eds), 1985, The Moore School Lectures (1946), Charles Babbage Institute Report Series for the History of Computing, Vol 9. M.R.Williams, 1985, History of Computing Technology, London: Prentice-Hall.KF -
7 Williams, Sir Frederic Calland
SUBJECT AREA: Electronics and information technology[br]b. 26 June 1911 Stockport, Cheshire, Englandd. 11 August 1977 Prestbury, Cheshire, England[br]English electrical engineer who invented the Williams storage cathode ray tube, which was extensively used worldwide as a data memory in the first digital computers.[br]Following education at Stockport Grammar School, Williams entered Manchester University in 1929, gaining his BSc in 1932 and MSc in 1933. After a short time as a college apprentice with Metropolitan Vickers, he went to Magdalen College, Oxford, to study for a DPhil, which he was awarded in 1936. He returned to Manchester University that year as an assistant lecturer, gaining his DSc in 1939. Following the outbreak of the Second World War he worked for the Scientific Civil Service, initially at the Bawdsey Research Station and then at the Telecommunications Research Establishment at Malvern, Worcestershire. There he was involved in research on non-incandescent amplifiers and diode rectifiers and the development of the first practical radar system capable of identifying friendly aircraft. Later in the war, he devised an automatic radar system suitable for use by fighter aircraft.After the war he resumed his academic career at Manchester, becoming Professor of Electrical Engineering and Director of the University Electrotechnical Laboratory in 1946. In the same year he succeeded in developing a data-memory device based on the cathode ray tube, in which the information was stored and read by electron-beam scanning of a charge-retaining target. The Williams storage tube, as it became known, not only found obvious later use as a means of storing single-frame, still television images but proved to be a vital component of the pioneering Manchester University MkI digital computer. Because it enabled both data and program instructions to be stored in the computer, it was soon used worldwide in the development of the early stored-program computers.[br]Principal Honours and DistinctionsKnighted 1976. OBE 1945. CBE 1961. FRS 1950. Hon. DSc Durham 1964, Sussex 1971, Wales 1971. First Royal Society of Arts Benjamin Franklin Medal 1957. City of Philadelphia John Scott Award 1960. Royal Society Hughes Medal 1963. Institution of Electrical Engineers Faraday Medal 1972. Institute of Electrical and Electronics Engineers Pioneer Award 1973.BibliographyWilliams contributed papers to many scientific journals, including Proceedings of the Royal Society, Proceedings of the Cambridge Philosophical Society, Journal of the Institution of Electrical Engineers, Proceedings of the Institution of Mechanical Engineers, Wireless Engineer, Post Office Electrical Engineers' Journal. Note especially: 1948, with J.Kilburn, "Electronic digital computers", Nature 162:487; 1949, with J.Kilburn, "A storage system for use with binary digital computing machines", Proceedings of the Institution of Electrical Engineers 96:81; 1975, "Early computers at Manchester University", Radio \& Electronic Engineer 45:327. Williams also collaborated in the writing of vols 19 and 20 of the MIT RadiationLaboratory Series.Further ReadingB.Randell, 1973, The Origins of Digital Computers, Berlin: Springer-Verlag. M.R.Williams, 1985, A History of Computing Technology, London: Prentice-Hall. See also: Stibitz, George R.; Strachey, Christopher.KFBiographical history of technology > Williams, Sir Frederic Calland
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8 robot
б) программное или аппаратное средство имитации деятельности человека; программа-робот; программа-агент; робот-игрушка- adaptive robotrobot for transferring objects — робот для транспортировки объектов, транспортный робот
- antropomorphic robot
- arm-based robot
- articulated robot
- artificial intelligent robot
- assembling robot
- assembly robot
- bio-technical robot
- blind robot
- Cartesian type robot
- coating robot
- computer-controlled robot
- computer-operated robot
- contouring robot
- cylindrical-type robot
- dedicated robot
- diagnostic robot
- digital servo robot
- domestic robot
- dosage robot
- educational robot
- electrically driven robot
- exploration robot
- first generation robot
- fixed robot
- fixed-sequence robot
- flexible robot
- flexible measuring robot
- floor-base robot
- gantry-type robot
- home robot
- hydraulically driven robot
- industrial robot
- inspection robot
- installation robot
- integrated robot
- intelligent robot
- interactive robot
- laboratory robot
- logical robot
- magnetic-gripper robot
- manipulating robot
- master robot
- master-slave robot
- measuring robot
- mechanical robot
- medical robot
- micro robot
- microprocessor-based robot
- military robot
- mobile robot
- modular robot
- moon robot
- movable robot
- multi-arm robot
- multifunctional robot
- multipurpose robot
- NC robot
- numerically controlled robot
- nurse robot
- open-loop control robot
- packaging robot
- personal robot
- pick-and-place robot
- playback robot
- pneumatically driven robot
- point-to-point robot
- polar-type robot
- positioning robot
- processing robot
- programmable robot
- protecting robot
- rectilinear-type robot
- remotely controllable robot
- replacing robot
- reprogrammable robot
- retail robot
- rotary-base robot
- SCARA robot
- second generation robot
- self-assembling robot
- self-learning robot
- self-mobile robot
- self-reproducing robot
- senseless robot
- sensing robot
- shape-recognition robot
- slave robot
- smart robot
- softwired robot
- sorting robot
- space robot
- speaking robot
- spherical-type robot
- spot-welding robot
- stationary robot
- suspended-base robot
- taking-in robot
- taking-out robot
- teaching robot
- technology robot
- telescopic-arm robot
- third generation robot
- traveling-bridge robot
- turnover robot
- unmanned robot
- variable-sequence robot
- vision-equipped robot
- voice-activated robot
- walking robot
- wheeled robot -
9 robot
б) программное или аппаратное средство имитации деятельности человека; программа-робот; программа-агент; робот-игрушка•- antropomorphic robotrobot for transferring objects — робот для транспортировки объектов, транспортный робот
- arm-based robot
- articulated robot
- artificial intelligent robot
- assembling robot
- assembly robot
- bio-technical robot
- blind robot
- Cartesian type robot
- coating robot
- computer-controlled robot
- computer-operated robot
- contouring robot
- cylindrical-type robot
- dedicated robot
- diagnostic robot
- digital servo robot
- domestic robot
- dosage robot
- educational robot
- electrically driven robot
- exploration robot
- first generation robot
- fixed robot
- fixed-sequence robot
- flexible measuring robot
- flexible robot
- floor-base robot
- gantry-type robot
- home robot
- hydraulically driven robot
- industrial robot
- inspection robot
- installation robot
- integrated robot
- intelligent robot
- interactive robot
- laboratory robot
- logical robot
- magnetic-gripper robot
- manipulating robot
- master robot
- master-slave robot
- measuring robot
- mechanical robot
- medical robot
- micro robot
- microprocessor-based robot
- military robot
- mobile robot
- modular robot
- moon robot
- movable robot
- multi-arm robot
- multifunctional robot
- multipurpose robot
- NC robot
- numerically controlled robot
- nurse robot
- open-loop control robot
- packaging robot
- personal robot
- pick-and-place robot
- playback robot
- pneumatically driven robot
- point-to-point robot
- polar-type robot
- positioning robot
- processing robot
- programmable robot
- protecting robot
- rectilinear-type robot
- remotely controllable robot
- replacing robot
- reprogrammable robot
- retail robot
- robot of machine
- rotary-base robot
- SCARA robot
- second generation robot
- self-assembling robot
- self-learning robot
- self-mobile robot
- self-reproducing robot
- senseless robot
- sensing robot
- shape-recognition robot
- slave robot
- smart robot
- softwired robot
- sorting robot
- space robot
- speaking robot
- spherical-type robot
- spot-welding robot
- stationary robot
- suspended-base robot
- taking-in robot
- taking-out robot
- teaching robot
- technology robot
- telescopic-arm robot
- third generation robot
- traveling-bridge robot
- turnover robot
- unmanned robot
- variable-sequence robot
- vision-equipped robot
- voice-activated robot
- walking robot
- wheeled robotThe New English-Russian Dictionary of Radio-electronics > robot
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10 measurement
2) размер3) система мер•downhole measurement while drilling — скважинные исследования в процессе бурения;measurement on a voltmeter — измерение вольтметром;to transfer measurements from standards to instruments — передавать размеры единиц от эталонов рабочим средствам измерений-
absolute measurement
-
ac measurements
-
accurate measurement
-
acting position measurement
-
acting speed measurement
-
airborne radar measurement
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ancillary measurement
-
angle measurement
-
angular position measurement
-
antenna measurements
-
antenna pattern measurement
-
attenuation measurement
-
aureole measurements
-
automatic workpiece measurement
-
balance measurement
-
balloon-borne measurements
-
balloon measurements
-
bared measurement
-
base measurement
-
calibration grade measurement
-
calibration measurement
-
check measurement
-
coarse visual measurement
-
cold measurements
-
comparative international measurement
-
comparative measurement
-
computer-aided measurement and control
-
consecutive measurements
-
conventional measurement
-
dc measurements
-
differential torque measurement
-
dimensional measurements
-
direct measurement
-
discharge measurement
-
distance measurement
-
distortion-free measurement
-
Doppler measurement
-
dual wavelength satellite measurements
-
dynamic measurements
-
eclipse measurements
-
electrical ac loss measurement
-
electrical measurements
-
emissivity measurement
-
end-use measurements
-
external measurement
-
field measurement
-
floating measurement
-
flow measurement
-
forest measurement
-
four-terminal measurement
-
free-field measurement
-
frequency-domain measurements
-
go-and-return measurement
-
ground-based measurements
-
hot measurements
-
hydraulic measurement
-
indirect measurement
-
inflight measurement
-
infrared measurements
-
in-process measurement
-
in-service measurement
-
in-situ measurements
-
instantaneous measurement
-
integrated measurement
-
internal measurement
-
in-water measurements
-
isotope-tracer measurement
-
laboratory measurements
-
land-based radar measurement
-
lidar visibility measurement
-
linear measurement
-
mass-spectrometer measurements
-
meaningful measurement
-
microwave measurements
-
multipath measurement
-
multipoint measurements
-
multispectral measurements
-
near-surface measurements
-
off-ground measurement
-
omnidirectional measurement
-
one-shot measurement
-
on-line frequency response measurement
-
out-of-service measurement
-
pattern measurement
-
pendulum measurement
-
phase-conscious measurement
-
photoelastic measurement
-
photometric measurements
-
physical measurements
-
point-to-point measurements
-
polarographic measurement
-
position measurement
-
potentiometric measurements
-
precision measurement
-
primary measurement
-
pseudorange measurement
-
pseudorange transit-time measurement
-
pulse measurements
-
qualitative measurement
-
quantitative measurement
-
radar distance measurement
-
radio interferential measurements
-
radio occultation measurements
-
radioactivity measurement
-
radiocarbon measurements
-
radiometric measurements
-
radiosonde measurements
-
reference measurement
-
reliable measurement
-
remote measurement
-
repeatable measurements
-
reproducible measurements
-
rocket ground measurements
-
rocket measurements
-
rocket probe measurements
-
rough measurement
-
routine measurement
-
satellite-based measurements
-
satellite measurements
-
sea truth measurements
-
sediment-load measurement
-
shipboard measurements
-
short-circuit measurement
-
single-plane measurements
-
sound measurement
-
spaceborne measurement
-
spaced sensor measurements
-
spectrophotometric measurement
-
spectrometric measurement
-
static measurements
-
steady-state measurements
-
substitution measurement
-
surface roughness measurement
-
survey measurement
-
time-domain measurements
-
tower measurement
-
traceable measurement
-
transfer measurement
-
two-plane measurements
-
typographic measurement
-
ultrasonic measurement
-
unambiguous measurement
-
unbalance measurement
-
uniform measurements
-
volume measurements
-
wide-angle measurements
-
work bench measurements
-
zero offset measurement -
11 printing
1. печать, печатание2. фотографическое копирование; копирование на формную пластину3. печатное издание4. тираж5. полиграфия, полиграфическая промышленность6. различные сорта печатной бумагиprinting together — печатание «со своим оборотом»
printing two-up — печатание двойников, параллельное печатание с двух одинаковых форм
printing verse — печатание на обороте, запечатывание оборотной стороны
address printing — адресование, печатание адреса
arc printing — дуговая печать, печатание с помощью электрической дуги
7. печатание на оборотной стороне прозрачной плёнкиbackground printing — фоновая печать, печатание фона
bible printing — словарная бумага, библьдрук
bichromate printing — печатание с форм, изготовленных с использованием хромированных коллоидов
8. печатание голубой краской; светокопирование9. изготовление синих копий, изготовление «синек»Braille printing — Брайлевская печать, печать для слепых
bronze printing — бронзирование, печатание бронзовой краской
10. печатание на картонных заготовках; печатание на картоне11. производство картонных упаковокcode printing — печатание кодовых меток, печатание кодовых знаков, кодирование, шифрование
12. цветная печатная бумагаcolor process printing — многокрасочное печатание с форм, изготовленных фотомеханическим способом
13. контактная печать14. контактное копированиеprinting lamp — лампа для копирования, копировальная лампа
15. печатание издания в нескольких вариантах с учётом интересов потребителей16. печатание по требованию одного экземпляра издания17. прямое контактное копирование18. прямая печать19. печатание с первичной формы20. печатание изобразительной продукцииprinting contrast — контраст, реализуемый при печатании
21. печатание на прозрачном материалеdot-in-dot printing — печатание с точной приводкой, печатание «точка в точку»
dot matrix character printing — печатание знаков, формируемых точечной матрицей
printing process — печатный процесс; процесс печатания
22. двукратное запечатывание23. комбинирование деталей двух разных негативов на одном позитиве или печатной формеduotone printing — печатание двухкрасочных репродукций с одноцветного оригинала, дуплекс-автотипия
electrophoretic printing — электрофоретическая печать, способ электрофоретической печати
electrostatographic printing — электрография, электрографическая печать
embossed printing for blind — рельефная печать для слепых, Брайлевская печать
facsimile printing — факсимильное воспроизведение, факсимильная печать
ferromagnetic printing — печатание ферромагнитными красками, магнитографская печать, магнитография
flat-bed printing — печатание на плоскопечатных машинах, печатание с плоских форм высокой печати
flexographic printing — флексографская печать, печатание с эластичных форм
form skip printing — печатание формуляров с пропусками отдельных пунктов на последовательно идущих страницах
24. четырёхкрасочная печатьprinting device — печатающее устройство; устройство печати
printing station — пункт вывода на печать; станция печати
25. печатание в четыре краски26. многокрасочная печать всеми основными краскамиgelatin printing — фототипия, печать с желатиновых печатных форм
27. нанесение клеевого слоя28. гуммированиеheat-set printing — печатание красками, закрепляющимися под действием нагрева
helios printing — гелиопечать, гелиография
hot foil printing — горячее тиснение фольгой, тиснение фольгой с использованием нагретого штампа
29. переводной способ копирования30. печатание через промежуточную поверхность; офсетная печать31. ведомственная печать32. внутрифирменная печатьiridescent printing — радужная печать; печать враскат
level impression printing — печатание с равномерным натиском, печатание с равномерным давлением
33. печатание литографским способом, литография34. офсетная печатьmagnetic ink printing — печатание магнитными красками, магнитографская печать, магнитография
35. картографическая печать, картопечатание36. производство картографической продукции37. копирование изображения на металлическую пластину38. печатание на металле39. акцидентная печать40. печатание акцидентной продукции41. однокрасочная печать42. печатание однокрасочной продукцииprinting pressure — давление печатания, натиск
43. многокрасочная печать44. печатание многокрасочной продукцииmultigraph printing — печатание с ручного набора, закреплённого на цилиндре
45. печатание газетно-журнальной продукции46. газетно-журнальное производство47. печатание газет48. газетное производствоoff-register printing — печатание с несовмещением, печатание с нарушением приводки
offset printing — офсет, офсетная печать
49. распечатка информации, хранящейся в базе данных вычислительной системы по требованию50. печатание по требованию51. печатание персонализированных изданий52. оптическая печать53. проекционное копирование54. печатание на упаковочных материалах55. производство упаковкиpackaging printing and converting — печать и изготовление упаковок; печать и изготовление тары
56. фотография57. фотопечать; копированиеphotographic offset printing — офсетная печать с форм, изготовленных фотомеханическим способом
58. глубокая печать59. печатание с гелиогравюрphotolithooffset printing — офсетная печать с форм, изготовленных фотомеханическим способом
60. печатание с форм, изготовленных фотомеханическим способом61. фотомеханический способ размножения62. печатание с гравированных медных пластин63. печатание вкладных иллюстрацийprocess printing — многокрасочная печать с форм, изготовленных фотомеханическим способом
64. печатание издательской продукции65. заключительная стадия печатанияraised printing — печатание с последующим оплавлением рельефа; рельефная печать
66. рефлексное копирование67. рефлексное печатание68. печатание с выворотных форм69. печатание с реверсивным приводом цилиндров; реверсивное печатание70. печатание на обороте, запечатывание оборотной стороныrotary printing — ротационная печать, печатание на ротационных машинах
71. печатание многокрасочных газет «по сырому»72. цветные краски для печатания газет73. растровая печать74. второй завод, допечаткаprinting mistake — опечатка, типографская ошибка
75. второй прогонselective printing — избирательное печатание, печатание с избирательным воспроизведением знаков
76. малотиражная печать77. малотиражное копированиеside-by-side printing — радужная печать, печать враскат
small offset printing — «малый офсет», печатание малоформатной продукции офсетным способом
solid printing — печатание со сплошных форм, печатание плашек
solid color printing — печатание со сплошных форм цветными красками, печатание цветных плашек
solventless printing — печатание красками, не содержащими растворителя
split color printing — радужная печать, печать враскат
78. трафаретная печать79. ротаторная печатьsublimatic heat transfer printing — термодекалькомания, сублимационная печать
test printing — пробное печатание, изготовление пробных оттисков
thermal printing — термопечать, термографская печать, термография; печатание термокрасками
thermographic printing — термопечать, термографская печать, термография, печатание термокрасками
three-color process printing — трёхкрасочная печать с цветоделённых печатных форм, изготовленных фотомеханическим способом
three-over-one printing — печатание красочностью 3+1
80. печатание на тканях81. печатание на тонкой бумаге82. декалькомания, печатание переводных изображений83. печатание с переносом изображенияtrouble-free printing — бесперебойное печатание, печатание без помех и перебоев
vapor printing — «дымовая» печать, печатание паром
water-based ink printing — печатание водными красками, печатание красками на водной основе
web printing — печатание на рулонном материале, рулонная печать
wood block printing — печатание с деревянного клише; ксилография
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12 printing
1) печать, печатание2) фотографическое копирование; копирование на формную пластину3) печатное издание4) тираж5) полиграфия, полиграфическая промышленность6) pl различные сорта печатной бумагиАнгло-русский словарь по полиграфии и издательскому делу > printing
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13 simulation
2. имитация, искусственное воспроизведениеsimulation derived6-DOF simulationair-to-air simulationair-to-air combat simulationaircraft simulationaircraft-surface simulationall-digital simulationclosed-loop simulationcomputational simulationcomputer simulationdirectional simulationdomed simulationdynamic simulationelectro optical simulationengineering simulationfailure simulationfar-field simulationfault simulationfine grid simulationfinite difference simulationfire simulationfixed-base simulationfixed-wing simulationflight simulationflight test simulationFLIR simulationflow-field simulationFroude simulationfull-mission simulationground simulationground operation simulationground-based simulationhardware-in-the-loop simulationhelicopter simulationhigh-angle-of-attack simulationin-flight simulationinfrared simulationintelligent simulationiron bird simulationjet-exhaust simulationlaboratory simulationlanding simulationlightning simulationLock simulationlow-altitude simulationman-in-the-loop simulationmaneuvering simulationmanned simulationmanned combat simulationmission simulationMonte-Carlo simulationmotion simulationmultiaircraft simulationmultiship simulationNavier-Stokes simulationnonpiloted simulationnumerical simulationon-board simulationout-of-the-window visual simulationoutside-world simulationpart-task simulationpilot simulationpiloted simulationradar simulationrefuelling simulationrotorcraft simulationSAR simulationsensor simulationsix-degree-of-freedom simulationstochastic simulationStrouhal simulationsynthetic aperture radar simulationthree-degree-of-freedom simulationtotal simulationtotal mission simulationvisual simulationweather simulationwindshear simulationwind tunnel simulation
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