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81 MCRL
1) Военный термин: mapping and charting research laboratory, master component repair list2) Сокращение: master cross-reference list -
82 NORINA
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83 TRML
Военный термин: Tropical Research Medical Laboratory, USAFE Target Reference Material List -
84 drl
1) Военный термин: Date Required to Load, document requirement list, Defense Research Laboratories (US)3) Автомобильный термин: daytime running lights, система DRL4) Металлургия: (double random length) двойная стандартная длина (трубы по API) (12м)5) Вычислительная техника: Dirty Region Logging, Dynamically Reconfigurable Logic (RL), Document Revocation List (TCPA)6) Нефть: double random length, двойная условная длина (например, труб), двухтрубные свечи из труб разной длины (double random length)7) Сетевые технологии: data retrieval language8) Должность: Dealers Room Liaison -
85 trml
Военный термин: Tropical Research Medical Laboratory, USAFE Target Reference Material List -
86 DRL
1. data reduction laboratory - лаборатория предварительной обработки данных;2. data requirement list - список запрашиваемых данных;3. data retrieval language - язык информационного поиска; язык поиска данных; информационно-поисковый язык;4. directional reference locator - радиолокатор с повышенной точностью пеленгации;5. dirty region logging - регистрация дефектных участков;6. document requirement list - список запрашиваемой документации;7. double random length - двухтрубные свечи из труб разной длины -
87 RL
1. radio link - линия радиосвязи;2. radiolocation - радиолокация; радиолокатор, радиолокационная станция, РЛС;3. reactor licensing - лицензирование реактора;4. receiving loss - потери при приёме;5. reference list - список ссылок; таблица ссылок;6. refracted longitudinal - преломленные продольно;7. remaining life - остаточный ресурс;8. retranslation link - ретрансляционная линия;9. rotational latency - задержка поиска сектора;10. Rutherford Laboratory - Резерфордовская лаборатория (Великобритания);11. обозначение для сухопутных радионавигационных станций с двумя рамочными антеннами (МСЭ) -
88 supply
1) (электро)питание, подвод электрической энергии || питать, подводить электрическую энергию2) источник (электро)питания; блок (электро)питания3) снабжение; поставка || снабжать; поставлять4) подача; подвод || подавать; подводить5) предложение (напр. товара)6) pl запас(ы)•- A-power supply
- B-power supply
- central current supply
- constant-current power supply
- constant-voltage power supply
- C-power supply
- digitally programmed power supply
- electronic power supply
- emergency power supply
- filament supply
- filament power supply
- flyback power supply
- full-wave power supply
- grid-voltage supply
- high-voltage power supply
- laboratory power supply
- line interactive uninterruptable power supply
- mains supply
- off-line uninterruptable power supply
- on-line uninterruptable power supply
- plate power supply
- polarizing voltage supply
- polyphase supply
- power supply
- primary power supply
- programmable power supply
- reference supply
- regulated power supply
- secondary power supply
- self-contained power supply
- single-phase supply
- standby uninterruptable power supply
- switchmode power supply
- uninterruptable power supply
- universal power supply
- vibrator power supply
- voltage-regulated ac power supply
- voltage-regulated power supply -
89 supply
1) (электро)питание, подвод электрической энергии || питать, подводить электрическую энергию2) источник (электро)питания; блок (электро)питания3) снабжение; поставка || снабжать; поставлять4) подача; подвод || подавать; подводить5) предложение (напр. товара)6) pl. запас(ы)•- anode power supply
- B power supply
- C power supply
- central current supply
- constant-current power supply
- constant-voltage power supply
- digitally programmed power supply
- electronic power supply
- emergency power supply
- filament power supply
- filament supply
- flyback power supply
- full-wave power supply
- grid-voltage supply
- high-voltage power supply
- laboratory power supply
- line interactive uninterruptable power supply
- mains supply
- off-line uninterruptable power supply
- on-line uninterruptable power supply
- plate power supply
- polarizing voltage supply
- polyphase supply
- power supply
- primary power supply
- programmable power supply
- reference supply
- regulated power supply
- secondary power supply
- self-contained power supply
- single-phase supply
- standby uninterruptable power supply
- switchmode power supply
- uninterruptable power supply
- universal power supply
- vibrator power supply
- voltage-regulated ac power supply
- voltage-regulated power supplyThe New English-Russian Dictionary of Radio-electronics > supply
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90 manual
['mænjuəl] 1. сущ.1) руководство; наставление; справочник, указатель; учебник- laboratory manual
- owner's manual
- teacher's manual
- field manualSyn:2) воен. приёмы владения оружием3)2. прил.1) ручнойа) ( сделанный вручную)2) физический, требующий применения физического труда -
91 equipment
оборудование; снаряжение; оснащение; оснастка (напр. станка); приспособления; приборы; аппаратура; арматура; принадлежности; подвижной состав; воен. материальная часть; боевая техника- equipment arrangement - equipment availability - equipment building - equipment capital costs - equipment casualty - equipment certificate - equipment certification - equipment certification requirement - equipment check - equipment checkout - equipment clock - equipment compatibility - equipment condition data - equipment damage - equipment dependability - equipment depot - equipment design failure - equipment error - equipment facilities - equipment failure - equipment failure information - equipment failure log - equipment for road construction - equipment for the manufacture of asbestos cement - equipment identification register - equipment identity register - equipment in place - equipment inspection - equipment-intermodulation noise - equipment investments - equipment lay-out - equipment layout - equipment lease - equipment leasing - equipment level controller - equipment location - equipment longevity - equipment maintenance facility - equipment maintenance management program - equipment maintenance officer - equipment maintenance ratio - equipment maintenance report - equipment maintenance team - equipment manufacturer code - equipment manufacturing failure - equipment-modification list - equipment monitoring - equipment nomenclature - equipment operating procedure - equipment operation test - equipment package - equipment performance log - equipment performance report - equipment placement - equipment programming - equipment protection device - equipment qualification - equipment rack - equipment ready date - equipment rebuilding - equipment reference book - equipment regulation - equipment reliability - equipment reliability status report - equipment repair time - equipment replacement - equipment replacement network - equipment reservation - equipment revamping - equipment review board - equipment room - equipment safety - equipment salvage - equipment schedule - equipment serviceability criterion - equipment side - equipment specifications - equipment spendings - equipment status board - equipment status chart - equipment status indication - equipment status log - equipment supervision - equipment terminal - equipment unavailability - equipment upgrading - equipment wire - accessory equipment - acoustic emission equipment - acoustical equipment - actuated equipment - add-on equipment - air equipment - air-chucking equipment - air-conditioning equipment - air-humidifying equipment - air-painting equipment - ancillary equipment - answering equipment - assembly equipment - balancing equipment - blasting equipment - board equipment - bolt-on equipment - brake equipment - built-in test equipment - calibration equipment - CAM equipment - capital equipment - cargo handling equipment - carrying and lifting equipment - centrifugal pumping equipment - checking equipment - collective protective equipment - compressor equipment - computer-aided test equipment - computer-automated equipment - concrete-handling equipment - consumption equipment - controllable balancing equipment - conveying equipment - coolant clarification equipment - cost-effective equipment - crane equipment - crane electrical equipment - crushing and screening equipment - data-processing equipment - dedicated equipment - defective equipment - de-icer equipment - demonstration equipment - detection equipment - detritus equipment - diagnosis equipment - diagnostic equipment - digital readout equipment - dimensional-inspection equipment - direction-finding equipment - driven equipment - durable equipment - electrical equipment - electrical discharge equipment - electroheat equipment - electrothermal equipment - emergency equipment - energy equipment - energy-intensive equipment - erection equipment - exhibition equipment - experimental equipment - external test equipment - FA-related equipment - fabricating equipment - fabrication equipment - factory-installed equipment - failed equipment - farming equipment - faulty equipment - feeding equipment - field-balancing equipment - filling equipment - finishing equipment - fire-fighting equipment - fire safety equipment - fixed equipment - fixed path equipment - flatness testing equipment - fuel handling equipment - gaging equipment - garage equipment - garage-repair equipment - gas equipment - gas-welding equipment - gear testing equipment - general-purpose equipment - general test equipment - grading equipment - greasing equipment - grit-dredging equipment - handling equipment - hard automation equipment - haulage equipment - hauling equipment - heat-treating equipment - hi-fi equipment - high-fi equipment - high-technology equipment - higher-horsepower equipment - homemade fire-fighting equipment - hydraulic equipment - hydraulic tracing equipment - idle equipment - ignition equipment - independent equipment - industrial equipment - industrial cleaning equipment - input equipment - inspection equipment - installation equipment - installed equipment - instrumental equipment - instrumented equipment - interconnecting equipment - jaw-type work-holding equipment - joining equipment - laboratory equipment - lifting equipment - lighting equipment - loading equipment - loading and unloading equipment for dryer cars - machine-tool equipment - machining equipment - maintenance equipment - maintenance-and-support equipment - manipulating equipment - manually controlled equipment - manufacturing equipment - material-handling equipment - materials-handling equipment - material mining equipment - MDI equipment - measurement-processing equipment - measuring and control equipment - measuring equipment - mechanical handling equipment - metal-cutting equipment - metering equipment - microprocessing equipment - microwave heating equipment - military equipment - mill-turn equipment - mobile equipment - monitoring equipment - mountable pile-driving equipment - multidimension gaging equipment - multisensor equipment - noise abatement equipment - non-assembled equipment - nonrepairable equipment - nonstandard equipment - off-road equipment - operational equipment - optional equipment - outdated equipment - outmoded equipment - out-of-repair equipment - paint equipment - parts-handling equipment - parts-washing equipment - pattern equipment - peripheral equipment - personal protection equipment - personal protective equipment - pipeline equipment - pipeline-laying equipment - pipeline-scraping equipment - pneumatic equipment - pile-driving equipment - piling equipment - portable jacking equipment - postprocess gaging equipment - preparatory machining equipment - presetting equipment - primary equipment - primary machining equipment - process control monitoring equipment - process equipment - process monitoring equipment - processing equipment - production equipment - production test equipment - professional drilling equipment - protective equipment - proving-and-indicating equipment - pulling-and-running equipment - pump-and-compressor equipment - pumping equipment - quarry equipment - reconditioning equipment - redundant equipment - refrigeration equipment - rejected equipment - reliable equipment - remote control equipment - remove an equipment - repair equipment - repairable equipment - reserve equipment - residential equipment - retrofit equipment - rippers equipment - road-building equipment - rope-suspended boom equipment - rotating equipment - round trip equipment - safeguarding equipment - safety equipment - safety-survival equipment - secondary equipment - self-balancing equipment - sensing equipment - service checkout equipment - service equipment - snow-cleaning equipment - snow-handling equipment - spare equipment - spark erosion equipment - special support equipment - special test equipment - standalone equipment - standard equipment - standby equipment - supervisory equipment - supplementary equipment - support equipment - supporting equipment - surface-measuring equipment - swarf-handling equipment - tank cleaning equipment - telescopic equipment - test equipment - test-and-maintenance equipment - testing equipment - tool equipment - tool-holding equipment - tooling equipment - tool-setting equipment - touch-probe inspection equipment - towing equipment - tracer equipment - traction-type equipment - training equipment - transferring equipment - transport equipment - transportation equipment - turning gaging equipment - unattended equipment - underground equipment - universal equipment - unrepairable equipment - up-to-date construction equipment - used equipment - utility equipment - value-added equipment - vandalproof equipment - vehicle greasing equipment - warehousing equipment - waste-minimization equipment - water-fed equipment - water-purification equipment - water quality monitoring equipment - water-treatment equipment - weed-control equipment - weighing equipment - weld deposition equipment - welding equipment - welding deposition equipment - wheel alignment equipment - work-holding equipment - workover equipment -
92 system
1) система; комплекс2) совокупность•- absolutely consistent system - absolutely direct indecomposable system - absolutely free system - absolutely irreducible system - absolutely isolated system - allowable coordinate system - almost linear system - ample linear system - artificial feel system - automatic block system - automatic deicing system - binary relational system - binary-coded decimal system - block tooling system - Cartesian coordinate system - completely controllable system - completely ergodic system - completely hyperbolic system - completely identifiable system - completely integrable system - completely irreducible system - completely regular system - completely stable system - completely stratified system - complex number system - conical coordinate system - derivational formal system - differential equation system - differential selsyn system - digital counting system - digital transmission system - elliptic coordinate system - elliptic cylindrical coordinate system - externally inconsistent system - finite state system - finitely axiomatizable system - finitely presented system - fully characteristic quotient system - fundamental system of solutions - hydraulic lift system - integrated switching system - isomorphically embedded system - kernel normal system - linearly dependent system - linearly independent system - live hydraulic system - locking protection system - meteor-burst communication system - modular programming system - parabolic cylindrical coordinate system - permanent four-wheel drive system - pure independent system - radio telephone system - reactor protection system - real number system - receiver-amplifier crioelectric system - remote-cylinder hydraulic system - semantically consistent system - simply consistent system - simply incomplete system - simply ordered system - spherical coordinate system - strongly multiplicative system - structurally stable system - sufficiently general coordinate system - system of frequency curves - system of rational numbers - time multiplex system - time-division multiplex system - uniformly complete system - univalent system of notation - universal system of notation - weakly closed system - weighted number system -
93 instrument
( измерительный) прибор; датчик; инструмент; оборудовать приборами [контрольно-записывающей аппаратурой]air data sensor instrument — прибор [датчик] для выработки воздушных данных; датчик высоты и скорости
cathode ray tube instrument — прибор с электронно-лучевой индикацией [с ЭЛТ]
vertical fixed tape instrument — прибор с профильной шкалой [шкалами]
vertical moving tape instrument — прибор с вертикальной ленточной шкалой [шкалами]
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94 Bevan, Edward John
[br]b. 11 December 1856 Birkenhead, Englandd. 17 October 1921 London, England[br]English co-inventor of the " viscose rayon " process for making artificial silk.[br]Bevan began his working life as a chemist in a soap works at Runcorn, but later studied chemistry at Owens College, Manchester. It was there that he met and formed a friendship with C.F. Cross, with whom he started to work on cellulose. Bevan moved to a paper mill in Scotland but then went south to London, where he and Cross set up a partnership in 1885 as consulting and analytical chemists. Their work was mainly concerned with the industrial utilization of cellulose, and with the problems of the paper and jute industries. Their joint publication, A Text-book of Paper-making, which first appeared in 1888 and went into several editions, became the standard reference and textbook on the subject. The book has a long introductory chapter on cellulose.In 1892 Cross, Bevan and Clayton Beadle discovered viscose, or sodium cellulose xanthate, and took out the patent which was to be the foundation of the "viscose rayon" industry. They had their own laboratory at Station Avenue, Kew Gardens, where they carried out much work that eventually resulted in viscose: cellulose, usually in the form of wood pulp, was treated first with caustic soda and then with carbon disulphide to form the xanthate, which was then dissolved in a solution of dilute caustic soda to produce a viscous liquid. After being aged, the viscose was extruded through fine holes in a spinneret and coagulated in a dilute acid to regenerate the cellulose as spinnable fibres. At first there was no suggestion of spinning it into fibre, but the hope was to use it for filaments in incandescent electric light bulbs. The sheen on the fibres suggested their possible use in textiles and the term "artificial silk" was later introduced. Cross and Bevan also discovered the acetate "Celanese", which was cellulose triacetate dissolved in acetone and spun in air, but both inventions needed much development before they could be produced commercially.In 1892 Bevan turned from cellulose to food and drugs and left the partnership to become Public Analyst to Middlesex County Council, a post he held until his death, although in 1895 he and Cross published their important work Cellulose. He was prominent in the affairs of the Society of Public Analysts and became one of its officials.[br]Bibliography1888, with C.F.Cross, A Text-book of Papermaking.1892, with C.F.Cross and C.Beadle, British patent no. 8,700 (viscose). 1895, with C.F.Cross, Cellulose.Further ReadingObituary, 1921, Journal of the Chemical Society.Obituary, 1921, Journal of the Society of Chemical Industry.Edwin J.Beer, 1962–3, "The birth of viscose rayon", Transactions of the Newcomen Society 35 (an account of the problems of developing viscose rayon; Beer worked under Cross in the Kew laboratories).RLH -
95 Chevenard, Pierre Antoine Jean Sylvestre
SUBJECT AREA: Metallurgy[br]b. 31 December 1888 Thizy, Rhône, Franced. 15 August 1960 Fontenoy-aux-Roses, France[br]French metallurgist, inventor of the alloys Elinvar and Platinite and of the method of strengthening nickel-chromium alloys by a precipitate ofNi3Al which provided the basis of all later super-alloy development.[br]Soon after graduating from the Ecole des Mines at St-Etienne in 1910, Chevenard joined the Société de Commentry Fourchambault et Decazeville at their steelworks at Imphy, where he remained for the whole of his career. Imphy had for some years specialized in the production of nickel steels. From this venture emerged the first austenitic nickel-chromium steel, containing 6 per cent chromium and 22–4 per cent nickel and produced commercially in 1895. Most of the alloys required by Guillaume in his search for the low-expansion alloy Invar were made at Imphy. At the Imphy Research Laboratory, established in 1911, Chevenard conducted research into the development of specialized nickel-based alloys. His first success followed from an observation that some of the ferro-nickels were free from the low-temperature brittleness exhibited by conventional steels. To satisfy the technical requirements of Georges Claude, the French cryogenic pioneer, Chevenard was then able in 1912 to develop an alloy containing 55–60 per cent nickel, 1–3 per cent manganese and 0.2–0.4 per cent carbon. This was ductile down to −190°C, at which temperature carbon steel was very brittle.By 1916 Elinvar, a nickel-iron-chromium alloy with an elastic modulus that did not vary appreciably with changes in ambient temperature, had been identified. This found extensive use in horology and instrument manufacture, and even for the production of high-quality tuning forks. Another very popular alloy was Platinite, which had the same coefficient of thermal expansion as platinum and soda glass. It was used in considerable quantities by incandescent-lamp manufacturers for lead-in wires. Other materials developed by Chevenard at this stage to satisfy the requirements of the electrical industry included resistance alloys, base-metal thermocouple combinations, magnetically soft high-permeability alloys, and nickel-aluminium permanent magnet steels of very high coercivity which greatly improved the power and reliability of car magnetos. Thermostatic bimetals of all varieties soon became an important branch of manufacture at Imphy.During the remainder of his career at Imphy, Chevenard brilliantly elaborated the work on nickel-chromium-tungsten alloys to make stronger pressure vessels for the Haber and other chemical processes. Another famous alloy that he developed, ATV, contained 35 per cent nickel and 11 per cent chromium and was free from the problem of stress-induced cracking in steam that had hitherto inhibited the development of high-power steam turbines. Between 1912 and 1917, Chevenard recognized the harmful effects of traces of carbon on this type of alloy, and in the immediate postwar years he found efficient methods of scavenging the residual carbon by controlled additions of reactive metals. This led to the development of a range of stabilized austenitic stainless steels which were free from the problems of intercrystalline corrosion and weld decay that then caused so much difficulty to the manufacturers of chemical plant.Chevenard soon concluded that only the nickel-chromium system could provide a satisfactory basis for the subsequent development of high-temperature alloys. The first published reference to the strengthening of such materials by additions of aluminium and/or titanium occurs in his UK patent of 1929. This strengthening approach was adopted in the later wartime development in Britain of the Nimonic series of alloys, all of which depended for their high-temperature strength upon the precipitated compound Ni3Al.In 1936 he was studying the effect of what is now known as "thermal fatigue", which contributes to the eventual failure of both gas and steam turbines. He then published details of equipment for assessing the susceptibility of nickel-chromium alloys to this type of breakdown by a process of repeated quenching. Around this time he began to make systematic use of the thermo-gravimetrie balance for high-temperature oxidation studies.[br]Principal Honours and DistinctionsPresident, Société de Physique. Commandeur de la Légion d'honneur.Bibliography1929, Analyse dilatométrique des matériaux, with a preface be C.E.Guillaume, Paris: Dunod (still regarded as the definitive work on this subject).The Dictionary of Scientific Biography lists around thirty of his more important publications between 1914 and 1943.Further Reading"Chevenard, a great French metallurgist", 1960, Acier Fins (Spec.) 36:92–100.L.Valluz, 1961, "Notice sur les travaux de Pierre Chevenard, 1888–1960", Paris: Institut de France, Académie des Sciences.ASDBiographical history of technology > Chevenard, Pierre Antoine Jean Sylvestre
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96 Davenport, Thomas
SUBJECT AREA: Electricity[br]b. 9 July 1802 Williamstown, Vermont, USAd. 6 July 1851 Salisbury, Vermont, USA[br]American craftsman and inventor who constructed the first rotating electrical machines in the United States.[br]When he was 14 years old Davenport was apprenticed to a blacksmith for seven years. At the close of his apprenticeship in 1823 he opened a blacksmith's shop in Brandon, Vermont. He began experimenting with electromagnets after observing one in use at the Penfield Iron Works at Crown Point, New York, in 1831. He saw the device as a possible source of power and by July 1834 had constructed his first electric motor. Having totally abandoned his regular business, Davenport built and exhibited a number of miniature machines; he utilized an electric motor to propel a model car around a circular track in 1836, and this became the first recorded instance of an electric railway. An application for a patent and a model were destroyed in a fire at the United States Patent Office in December 1836, but a second application was made and Davenport received a patent the following year for Improvements in Propelling Machinery by Magnetism and Electromagnetism. A British patent was also obtained. A workshop and laboratory were established in New York, but Davenport had little financial backing for his experiments. He built a total of over one hundred motors but was defeated by the inability to obtain an inexpensive source of power. Using an electric motor of his own design to operate a printing press in 1840, he undertook the publication of a journal, The Electromagnet and Mechanics' Intelligencer. This was the first American periodical on electricity, but it was discontinued after a few issues. In failing health he retired to Vermont where in the last year of his life he continued experiments in electromagnetism.[br]Bibliography1837, US patent no. 132, "Improvements in Propelling Machinery by Magnetism and Electromagnetism".6 June 1837 British patent no. 7,386.Further ReadingF.L.Pope, 1891, "Inventors of the electric motor with special reference to the work of Thomas Davenport", Electrical Engineer, 11:1–5, 33–9, 65–71, 93–8, 125–30 (the most comprehensive account).Annals of Electricity (1838) 2:257–64 (provides a description of Davenport's motor).W.J.King, 1962, The Development of Electrical Technology in the 19th Century, Washington, DC: Smithsonian Institution, Paper 28, pp. 263–4 (a short account).GW -
97 HRL
HRL, high-repetition laser————————HRL, horizontal reference line————————HRL, human resources laboratoryEnglish-Russian dictionary of planing, cross-planing and slotting machines > HRL
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98 culture
culture 1. культура (напр. бактерий) ; 2. разведение, выращиваниеculture культура, культивирование организмов или тканей в лабораторных условиях на искусственно приготовленной средеculture chamber культуральная камераadhesive culture культура в капле среды на покровном стеклеaerated culture аэрированная культураaerobic culture аэробная культураagar culture культура на агареagitated culture перемешиваемая встряхиванием культураanaerobic culture анаэробная культураanimal culture культура клеток животныхaroma-producing culture ароматообразующая культураartificial culture искусственное разведениеaseptic culture асептическое выращиваниеaxenic culture аксенная культура, стерильная культура; чистая культураbatch culture культура одного производственного циклаbatch culture периодическая культураbroth culture бульонная культураcallus tissue culture культура каллусных тканейcell culture культура клетокcell suspension culture суспензионная культура клетокchorioallantoic culture хориоаллантоисная культураclonal culture клонированная культураcontaminated culture загрязненная культураcontaminated culture нечистая культураcontinuons-flow culture проточная культураcontrol culture контрольная культураdark-grown culture выращенная в темноте культураdeep-liquid culture глубинная культураdifferentiated culture дифференцированная культураdiploidization of culture диплоидизация культурыdried culture высушенная культураdroplet culture капельная культураembryo culture культура эмбрионовenrichment culture обогатительная культураexcised embryo culture культура изолированных эмбрионовexcised organ culture культура изолированных органовexperimental culture экспериментальная культураexplant culture культура тканиexposition of culture воздействие на культуруfed-batch culture подпитываемая культура одного производственного циклаfreeze-dried culture лиофилизованная культураfrozen culture замороженная культураfungal culture культура грибовgerm culture микробная культураglycerolized culture глицериновая культураgrowing culture растущая культура; размножающаяся культураhabituated culture адаптированная культураheavily sporulating culture обильно спорулирующая культураheterogeneous culture гетерогенная культураhigh density culture концентрированная культураhomogeneous culture гомогенная культураhousing patent culture коллекционная патентованная культураhuman cell culture культура клеток человекаhuman tissue culture культура ткани человекаimproving culture conditions оптимизированные условия культивированияimpure culture загрязнённая культураisolated clonal culture изолированная клонированная культураisolated protoplast culture культура изолированных протопластовlaboratory culture лабораторная культураlarge-scale culture крупномасштабная культураliquid culture культура в жидкой средеlogarithmic phase culture культура, находящаяся в логарифмической фазе ростаlong-period culture длительная культураmaintaining culture поддерживаемая культураmaintaining culture сохраняемая культураmanufacturing plant culture промышленная культураmass culture массовая культураmicrocarrier culture культура клеток на микроносителяхmixed culture смешанная культураmonolayer cell culture монослойная культураmonolayer culture монослойная культура, однослойная культураmonospecies culture монокультураmonoxenic culture моноксенная культураnegative culture отрицательная культураnonproliferating culture непролиферирующая культураnonsporulating culture неспорообразующая культураold culture старая культураopen culture непрерывная культураovernight culture ночная культураPetri dish culture культура на чашках ПетриPetry dish culture культура на чашках Петриplant cell culture культура клеток растенияplant tissue culture культура клеток растительной тканиplate culture культура на чашках Петриpositive culture положительная культураpreserved culture законсервированная культураpreserved culture сохраняемая культураprimary culture первичная культураproduction culture производственная культураprompt culture закваскаprompt culture затравочная культураprotoplast culture культура протопластовpure culture чистая культураreference culture тест-культураreplicate culture реплицированная культураresistant culture резистентная культураroll bottle culture роллерная культураrotated culture роллерная культураroutine culture стандартная культураseed culture посевная культураselective culture селективная культураserum-free culture бессывороточная культураshort-term culture кратковременная культураsingle cell culture культура, полученная из одной клеткиsingle cell culture культура одной клеткиsingle cell culture культура одноклеточного организмаsingle-cell culture культура, выделенная из одной клеткиsister culture сестринская культураslant culture культура на скошенном агареslide culture культура на предметном стеклеslope culture культура на скошенном агареsmear culture культура мазкомsoil culture почвенная культураsoil-water culture культура на почвенной вытяжкеspent culture отработанная культураsporulating culture спорулирующая культураstabilized culture стабилизированная культураstarter culture закваскаstatic culture статическая культураsteady-state culture стационарная культураstock culture штамм, чистая культураstock culture collection базовая коллекция культур микроорганизмовstock yeast culture маточные дрожжиstored culture законсервированная культураstroke culture поверхностная культураsubmerged culture погружённая культура, глубинная культураsurface culture поверхностная культураsuspended cell culture культура ткани из суспендированных клетокsuspension culture суспензионная культураsynchronized culture синхронизированная культураsynchronous culture синхронно растущая культураtest-tube culture пробирочная культураtissue culture тканевая культура, культура тканиtumor tissue culture культура опухолевой тканиtwo-membered culture смешанная культура двух видов организмовtype culture стандартная культураtype culture типовая культураunialgal culture альгологически чистая культура (свободная от водорослей других видов)water culture водная культураworking culture рабочая культураyoung culture молодая культураEnglish-Russian dictionary of biology and biotechnology > culture
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99 RL
- радиационная лаборатория
- перечень ссылок
- обратные потери
- лицензирование ядерного реактора
- возвратные потери
возвратные потери
—
[Дмитрий Мацкевич. Справочное руководство. Основные понятия, требования, рекомендации и правила проектирования и инсталляции СКС LANMASTER. Версия 2.22]
возвратные потери
обратное отражение
Потери, возникающие при отражении сигнала. Возвратные потери рассчитываются, как отношение уровня отраженного сигнала к уровню передаваемого сигнала.
[СН РК 3.02-17-2011]Тематики
EN
- RL
- return loss
лицензирование ядерного реактора
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[А.С.Гольдберг. Англо-русский энергетический словарь. 2006 г.]Тематики
EN
обратные потери
Потери, возникающие в линии передачи или кабеле из-за несоответствия их импедансов и оконечной нагрузки. Обычно они измеряются в децибелах, т.е. RL = -20lg (Uп/Uот), где Uп - амплитуда падающей волны, Uот - амплитуда отраженной волны. Аналогичным образом вычисляются обратные потери по мощности в виде отношения падающего потока электромагнитной энергии к отраженному.
[Л.М. Невдяев. Телекоммуникационные технологии. Англо-русский толковый словарь-справочник. Под редакцией Ю.М. Горностаева. Москва, 2002]Тематики
- электросвязь, основные понятия
EN
перечень ссылок
таблица ссылок
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[А.С.Гольдберг. Англо-русский энергетический словарь. 2006 г.]Тематики
Синонимы
EN
радиационная лаборатория
(для работы с радиоактивными источниками)
[А.С.Гольдберг. Англо-русский энергетический словарь. 2006 г.]Тематики
EN
Англо-русский словарь нормативно-технической терминологии > RL
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100 ERL
- лаборатория по изучению окружающей среды
- контрольный уровень аварийного режима или аварийной ситуации
- затухание отражения эхо-сигнала
затухание отражения эхо-сигнала
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[Л.Г.Суменко. Англо-русский словарь по информационным технологиям. М.: ГП ЦНИИС, 2003.]Тематики
EN
контрольный уровень аварийного режима или аварийной ситуации
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[А.С.Гольдберг. Англо-русский энергетический словарь. 2006 г.]Тематики
EN
лаборатория по изучению окружающей среды
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[А.С.Гольдберг. Англо-русский энергетический словарь. 2006 г.]Тематики
EN
Англо-русский словарь нормативно-технической терминологии > ERL
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