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41 broach
протяжка; прошивка; бородок; сверло; развёртка; ёрш; шило; долото; II протягивать; обрабатывать протяжкой; прошивать (отверстие); пробуравить; вскрыть (ящик, бочку)- broach bar - broach bit - broach blade - broach carrier - broach cylinder - broach file - broach for external work - broach for internal work broach - broach for round holes - broach-grinding machine - broach gullet - broach-handling device - broach-handling slide - broach-handling unit - broach holder - broach insert support body - broach lifter cylinder - broach line - broach out - broach position - broach pull head - broach pulldown machine - broach puller - broach-pulling stroke - broach ram - broach relief groove - broach removal device - broach retriever - broach retriever cylinder - broach retriever mechanism - broach retriever unit - broach ring - broach section - broach set - broach sharpener - broach-sharpening machine - broach slide - broach tool - broach train - broach with burnishing buttons - built-up broach - burnishing broach - carbide-tooth broach - circular broach - circular cutting broach - combination round-and-spline broach - complex broach - continuous broach - cylindrical broach - depth cutting-type broach - double-cut broach - dwell tooth broach - external broach - female broach - finish broach - finishing broach - fir-tree-root broach - flat broach - form broach - gear tooth broach - helical groove broach - helical spline broach - hexagon broach - horizontal broach - hydraulic broach - insert-type carbide broach - internal broach - internal-gear broach - involute spline broach - keyway broach - lateral cutting-type broach - mill broach - one-pass broach - part-transfer vertical broach - pit-operated broach - pot broach - pull broach - pulldown broach - pull-type broach - push broach - pushup broach - rectangular broach - rifling broach - rotary broach - rough cut broach - round broach - round-hole broach - sectional broach - serration broach - side cutting broach - sideways cutting-type broach - single keyway broach - sizing broach - slabbing broach - slab-type broach - slitting broach - slot broach - solid broach - spiral broach - spline broach - square broach - square-hole broach - surface broach - twin broaches - variable pitch tooth broach - vertical broach - wobble broach - workpiece transfer-type broach -
42 Harrison, John
[br]b. 24 March 1693 Foulby, Yorkshire, Englandd. 24 March 1776 London, England[br]English horologist who constructed the first timekeeper of sufficient accuracy to determine longitude at sea and invented the gridiron pendulum for temperature compensation.[br]John Harrison was the son of a carpenter and was brought up to that trade. He was largely self-taught and learned mechanics from a copy of Nicholas Saunderson's lectures that had been lent to him. With the assistance of his younger brother, James, he built a series of unconventional clocks, mainly of wood. He was always concerned to reduce friction, without using oil, and this influenced the design of his "grasshopper" escapement. He also invented the "gridiron" compensation pendulum, which depended on the differential expansion of brass and steel. The excellent performance of his regulator clocks, which incorporated these devices, convinced him that they could also be used in a sea dock to compete for the longitude prize. In 1714 the Government had offered a prize of £20,000 for a method of determining longitude at sea to within half a degree after a voyage to the West Indies. In theory the longitude could be found by carrying an accurate timepiece that would indicate the time at a known longitude, but the requirements of the Act were very exacting. The timepiece would have to have a cumulative error of no more than two minutes after a voyage lasting six weeks.In 1730 Harrison went to London with his proposal for a sea clock, supported by examples of his grasshopper escapement and his gridiron pendulum. His proposal received sufficient encouragement and financial support, from George Graham and others, to enable him to return to Barrow and construct his first sea clock, which he completed five years later. This was a large and complicated machine that was made out of brass but retained the wooden wheelwork and the grasshopper escapement of the regulator clocks. The two balances were interlinked to counteract the rolling of the vessel and were controlled by helical springs operating in tension. It was the first timepiece with a balance to have temperature compensation. The effect of temperature change on the timekeeping of a balance is more pronounced than it is for a pendulum, as two effects are involved: the change in the size of the balance; and the change in the elasticity of the balance spring. Harrison compensated for both effects by using a gridiron arrangement to alter the tension in the springs. This timekeeper performed creditably when it was tested on a voyage to Lisbon, and the Board of Longitude agreed to finance improved models. Harrison's second timekeeper dispensed with the use of wood and had the added refinement of a remontoire, but even before it was tested he had embarked on a third machine. The balance of this machine was controlled by a spiral spring whose effective length was altered by a bimetallic strip to compensate for changes in temperature. In 1753 Harrison commissioned a London watchmaker, John Jefferys, to make a watch for his own personal use, with a similar form of temperature compensation and a modified verge escapement that was intended to compensate for the lack of isochronism of the balance spring. The time-keeping of this watch was surprisingly good and Harrison proceeded to build a larger and more sophisticated version, with a remontoire. This timekeeper was completed in 1759 and its performance was so remarkable that Harrison decided to enter it for the longitude prize in place of his third machine. It was tested on two voyages to the West Indies and on both occasions it met the requirements of the Act, but the Board of Longitude withheld half the prize money until they had proof that the timekeeper could be duplicated. Copies were made by Harrison and by Larcum Kendall, but the Board still continued to prevaricate and Harrison received the full amount of the prize in 1773 only after George III had intervened on his behalf.Although Harrison had shown that it was possible to construct a timepiece of sufficient accuracy to determine longitude at sea, his solution was too complex and costly to be produced in quantity. It had, for example, taken Larcum Kendall two years to produce his copy of Harrison's fourth timekeeper, but Harrison had overcome the psychological barrier and opened the door for others to produce chronometers in quantity at an affordable price. This was achieved before the end of the century by Arnold and Earnshaw, but they used an entirely different design that owed more to Le Roy than it did to Harrison and which only retained Harrison's maintaining power.[br]Principal Honours and DistinctionsRoyal Society Copley Medal 1749.Bibliography1767, The Principles of Mr Harrison's Time-keeper, with Plates of the Same, London. 1767, Remarks on a Pamphlet Lately Published by the Rev. Mr Maskelyne Under theAuthority of the Board of Longitude, London.1775, A Description Concerning Such Mechanisms as Will Afford a Nice or True Mensuration of Time, London.Further ReadingR.T.Gould, 1923, The Marine Chronometer: Its History and Development, London; reprinted 1960, Holland Press.—1978, John Harrison and His Timekeepers, 4th edn, London: National Maritime Museum.H.Quill, 1966, John Harrison, the Man who Found Longitude, London. A.G.Randall, 1989, "The technology of John Harrison's portable timekeepers", Antiquarian Horology 18:145–60, 261–77.J.Betts, 1993, John Harrison London (a good short account of Harrison's work). S.Smiles, 1905, Men of Invention and Industry; London: John Murray, Chapter III. Dictionary of National Biography, Vol. IX, pp. 35–6.DV -
43 Lombe, John
SUBJECT AREA: Textiles[br]b. c. 1693 probably Norwich, Englandd. 20 November 1722 Derby, England[br]English creator of the first successful powered textile mill in Britain.[br]John Lombe's father, Henry Lombe, was a worsted weaver who married twice. John was the second son of the second marriage and was still a baby when his father died in 1695. John, a native of the Eastern Counties, was apprenticed to a trade and employed by Thomas Cotchett in the erection of Cotchett's silk mill at Derby, which soon failed however. Lombe went to Italy, or was sent there by his elder half-brother, Thomas, to discover the secrets of their throwing machinery while employed in a silk mill in Piedmont. He returned to England in 1716 or 1717, bringing with him two expert Italian workmen.Thomas Lombe was a prosperous London merchant who financed the construction of a new water-powered silk mill at Derby which is said to have cost over £30,000. John arranged with the town Corporation for the lease of the island in the River Derwent, where Cotchett had erected his mill. During the four years of its construction, John first set up the throwing machines in other parts of the town. The machines were driven manually there, and their product helped to defray the costs of the mill. The silk-throwing machine was very complex. The water wheel powered a horizontal shaft that was under the floor and on which were placed gearwheels to drive vertical shafts upwards through the different floors. The throwing machines were circular, with the vertical shafts running through the middle. The doubled silk threads had previously been wound on bobbins which were placed on spindles with wire flyers at intervals around the outer circumference of the machine. The bobbins were free to rotate on the spindles while the spindles and flyers were driven by the periphery of a horizontal wheel fixed to the vertical shaft. Another horizontal wheel set a little above the first turned the starwheels, to which were attached reels for winding the silk off the bobbins below. Three or four sets of these spindles and reels were placed above each other on the same driving shaft. The machine was very complicated for the time and must have been expensive to build and maintain.John lived just long enough to see the mill in operation, for he died in 1722 after a painful illness said to have been the result of poison administered by an Italian woman in revenge for his having stolen the invention and for the injury he was causing the Italian trade. The funeral was said to have been the most superb ever known in Derby.[br]Further ReadingSamuel Smiles, 1890, Men of Invention and Industry, London (probably the only biography of John Lombe).Rhys Jenkins, 1933–4, "Historical notes on some Derbyshire industries", Transactions of the Newcomen Society 14 (provides an acount of John Lombe and his part in the enterprise at Derby).R.L.Hills, 1970, Power in the Industrial Revolution, Manchester (briefly covers the development of early silk-throwing mills).W.English, 1969, The Textile Industry, London (includes a chapter on "Lombe's Silk Machine").P.Barlow, 1836, Treatise of Manufactures and Machinery of Great Britain, London (describes Lombe's mill and machinery, but it is not known how accurate the account may be).RLH -
44 Villard de Honnecourt
[br]b. c. 1200 Honnecourt-sur-Escaut, near Cambrai, Franced. mid-13th century (?) France[br]French architect-engineer.[br]Villard was one of the thirteenth-century architect-engineers who were responsible for the design and construction of the great Gothic cathedrals and other churches of the time. Their responsibilities covered all aspects of the work, including (in the spirit of the Roman architect Vitruvius) the invention and construction of mechanical devices. In their time, these men were highly esteemed and richly rewarded, although few of the inscriptions paying tribute to their achievements have survived. Villard stands out among them because a substantial part of his sketchbook has survived, in the form of thirty-three parchment sheets of drawings and notes, now kept in the Bibliothèque Nationale in Paris. Villard's professional career lasted roughly from 1225 to 1250. As a boy, he went to work on the building of the Cistercian monastery at Vaucelles, not far from Honnecourt, and afterwards he was apprenticed to the masons' lodge at Cambrai Cathedral, where he began copying the drawings and layouts on the tracing-house floor. All his drawings are, therefore, of the plans, elevations and sections of cathedrals. These buildings have long since been destroyed, but his drawings, perhaps among his earliest, bear witness to their architecture. He travelled widely in France and recorded features of the great works at Reims, Laon and Chartres. These include the complex system of passageways built into the fabric of a great cathedral; Villard comments that one of their purposes was "to allow circulation in case of fire".Villard was invited to Hungary and reached there c. 1235. He may have been responsible for the edifice dedicated to St Elizabeth of Hungary, canonized in 1235, at Kassa (now Košice, Slovakia). Villard probably returned to France c. 1240, at least before the Tartar invasion of Hungary in 1241.His sketchbook, which dates to c. 1235, stands as a memorial to Villard's skill as a draughtsman, a student of perspective and a mechanical engineer. He took his sketchbook with him on his travels, and used ideas from it in his work abroad. It contains architectural designs, geometrical constructions for use in building, surveying exercises and drawings for various kinds of mechanical devices, for civil or military use. He was transmitting details from the highly developed French Gothic masons to the relatively underdeveloped eastern countries. The notebooks were annotated for the use of pupils and other master masons, and the notes on geometry were obviously intended for pupils. The prize examples are the pages in the book, clearly Villard's own work, related to mechanical devices. Whilst he, like many others of the period and after, played with designs for perpetual-motion machines, he concentrated on useful devices. These included the first Western representation of a perpetualmotion machine, which at least displays a concern to derive a source of energy: this was a water-powered sawmill, with automatic feed of the timber into the mill. This has been described as the first industrial automatic power-machine to involve two motions, for it not only converts the rotary motion of the water-wheel to the reciprocating motion of the saw, but incorporates a means of keeping the log pressed against the saw. His other designs included water-wheels, watermills, the Archimedean screw and other curious devices.[br]BibliographyOf several facsimile reprints with notes there are Album de Villard de Honnecourt, 1858, ed. J.B.Lassus, Paris (repr. 1968, Paris: Laget), and The Sketchbook of Villard de Honnecourt, 1959, ed. T.Bowie, Bloomington: Indiana University Press.Further ReadingJ.Gimpel, 1977, "Villard de Honnecourt: architect and engineer", The Medieval Machine, London: Victor Gollancz, ch. 6, pp. 114–46.——1988, The Medieval Machine, the Industrial Revolution of the Middle Ages, London.R.Pernord, J.Gimpel and R.Delatouche, 1986, Le Moyen age pour quoi fayre, Paris.KM / LRD -
45 Computers
The brain has been compared to a digital computer because the neuron, like a switch or valve, either does or does not complete a circuit. But at that point the similarity ends. The switch in the digital computer is constant in its effect, and its effect is large in proportion to the total output of the machine. The effect produced by the neuron varies with its recovery from [the] refractory phase and with its metabolic state. The number of neurons involved in any action runs into millions so that the influence of any one is negligible.... Any cell in the system can be dispensed with.... The brain is an analogical machine, not digital. Analysis of the integrative activities will probably have to be in statistical terms. (Lashley, quoted in Beach, Hebb, Morgan & Nissen, 1960, p. 539)It is essential to realize that a computer is not a mere "number cruncher," or supercalculating arithmetic machine, although this is how computers are commonly regarded by people having no familiarity with artificial intelligence. Computers do not crunch numbers; they manipulate symbols.... Digital computers originally developed with mathematical problems in mind, are in fact general purpose symbol manipulating machines....The terms "computer" and "computation" are themselves unfortunate, in view of their misleading arithmetical connotations. The definition of artificial intelligence previously cited-"the study of intelligence as computation"-does not imply that intelligence is really counting. Intelligence may be defined as the ability creatively to manipulate symbols, or process information, given the requirements of the task in hand. (Boden, 1981, pp. 15, 16-17)The task is to get computers to explain things to themselves, to ask questions about their experiences so as to cause those explanations to be forthcoming, and to be creative in coming up with explanations that have not been previously available. (Schank, 1986, p. 19)In What Computers Can't Do, written in 1969 (2nd edition, 1972), the main objection to AI was the impossibility of using rules to select only those facts about the real world that were relevant in a given situation. The "Introduction" to the paperback edition of the book, published by Harper & Row in 1979, pointed out further that no one had the slightest idea how to represent the common sense understanding possessed even by a four-year-old. (Dreyfus & Dreyfus, 1986, p. 102)A popular myth says that the invention of the computer diminishes our sense of ourselves, because it shows that rational thought is not special to human beings, but can be carried on by a mere machine. It is a short stop from there to the conclusion that intelligence is mechanical, which many people find to be an affront to all that is most precious and singular about their humanness.In fact, the computer, early in its career, was not an instrument of the philistines, but a humanizing influence. It helped to revive an idea that had fallen into disrepute: the idea that the mind is real, that it has an inner structure and a complex organization, and can be understood in scientific terms. For some three decades, until the 1940s, American psychology had lain in the grip of the ice age of behaviorism, which was antimental through and through. During these years, extreme behaviorists banished the study of thought from their agenda. Mind and consciousness, thinking, imagining, planning, solving problems, were dismissed as worthless for anything except speculation. Only the external aspects of behavior, the surface manifestations, were grist for the scientist's mill, because only they could be observed and measured....It is one of the surprising gifts of the computer in the history of ideas that it played a part in giving back to psychology what it had lost, which was nothing less than the mind itself. In particular, there was a revival of interest in how the mind represents the world internally to itself, by means of knowledge structures such as ideas, symbols, images, and inner narratives, all of which had been consigned to the realm of mysticism. (Campbell, 1989, p. 10)[Our artifacts] only have meaning because we give it to them; their intentionality, like that of smoke signals and writing, is essentially borrowed, hence derivative. To put it bluntly: computers themselves don't mean anything by their tokens (any more than books do)-they only mean what we say they do. Genuine understanding, on the other hand, is intentional "in its own right" and not derivatively from something else. (Haugeland, 1981a, pp. 32-33)he debate over the possibility of computer thought will never be won or lost; it will simply cease to be of interest, like the previous debate over man as a clockwork mechanism. (Bolter, 1984, p. 190)t takes us a long time to emotionally digest a new idea. The computer is too big a step, and too recently made, for us to quickly recover our balance and gauge its potential. It's an enormous accelerator, perhaps the greatest one since the plow, twelve thousand years ago. As an intelligence amplifier, it speeds up everything-including itself-and it continually improves because its heart is information or, more plainly, ideas. We can no more calculate its consequences than Babbage could have foreseen antibiotics, the Pill, or space stations.Further, the effects of those ideas are rapidly compounding, because a computer design is itself just a set of ideas. As we get better at manipulating ideas by building ever better computers, we get better at building even better computers-it's an ever-escalating upward spiral. The early nineteenth century, when the computer's story began, is already so far back that it may as well be the Stone Age. (Rawlins, 1997, p. 19)According to weak AI, the principle value of the computer in the study of the mind is that it gives us a very powerful tool. For example, it enables us to formulate and test hypotheses in a more rigorous and precise fashion than before. But according to strong AI the computer is not merely a tool in the study of the mind; rather the appropriately programmed computer really is a mind in the sense that computers given the right programs can be literally said to understand and have other cognitive states. And according to strong AI, because the programmed computer has cognitive states, the programs are not mere tools that enable us to test psychological explanations; rather, the programs are themselves the explanations. (Searle, 1981b, p. 353)What makes people smarter than machines? They certainly are not quicker or more precise. Yet people are far better at perceiving objects in natural scenes and noting their relations, at understanding language and retrieving contextually appropriate information from memory, at making plans and carrying out contextually appropriate actions, and at a wide range of other natural cognitive tasks. People are also far better at learning to do these things more accurately and fluently through processing experience.What is the basis for these differences? One answer, perhaps the classic one we might expect from artificial intelligence, is "software." If we only had the right computer program, the argument goes, we might be able to capture the fluidity and adaptability of human information processing. Certainly this answer is partially correct. There have been great breakthroughs in our understanding of cognition as a result of the development of expressive high-level computer languages and powerful algorithms. However, we do not think that software is the whole story.In our view, people are smarter than today's computers because the brain employs a basic computational architecture that is more suited to deal with a central aspect of the natural information processing tasks that people are so good at.... hese tasks generally require the simultaneous consideration of many pieces of information or constraints. Each constraint may be imperfectly specified and ambiguous, yet each can play a potentially decisive role in determining the outcome of processing. (McClelland, Rumelhart & Hinton, 1986, pp. 3-4)Historical dictionary of quotations in cognitive science > Computers
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46 Smith, J.
SUBJECT AREA: Textiles[br]fl. 1830s Scotland[br]Scottish inventor of the first endless chain of flats for carding.[br]Carding by hand required a pair of hand cards. The lump of tangled fibres was teased out by pulling one card across the other to even out the fibres and transfer them onto one of the cards from which they could be rolled up into a rollag or slubbing. When Arkwright began to use cylinder cards, the fibres were teased out as they passed from one cylinder to the next. In order to obtain a greater carding area, he soon introduced smaller cylinders and placed strips of flat card above the periphery of the main cylinder. These became clogged with short fibres and dirt, so they had to be lifted off and cleaned or "stripped" at intervals. The first to invent a self-stripping card was Archibald Buchanan, at the Catrine mills in Ayrshire, with his patent in 1823. In his arrangement each flat was turned upside down and stripped by a rotary brush. This was improved by Smith in 1834 and patented in the same year. Smith fixed the flats on an endless chain so that they travelled around the periphery of the top of the main cylinder. Just after the point where they left the cylinder, Smith placed a rotary brush and a comb to clear the brush. In this way each flat in turn was properly and regularly cleaned.Smith was an able mechanic and Managing Partner of the Deanston mills in Scotland. He visited Manchester, where he was warmly received on the introduction of his machine there at about the same time as he patented it in Scotland. The carding engine he designed was complex, for he arranged a double feed to obtain greater production. While this part of his patent was not developed, his chain or endless flats became the basis used in later cotton carding engines. He took out at least half a dozen other patents for textile machinery. These included two in 1834, the first for a self-acting mule and the second with J.C. Dyer for improvements to winding on to spools. There were further spinning patents in 1839 and 1844 and more for preparatory machinery including carding in 1841 and 1842. He was also interested in agriculture and invented a subsoil plough and other useful things.[br]Bibliography1834, British patent no. 6,560 (self-stripping card). 1834, British patent no. 656 (self-acting mule). 1839, British patent no. 8,054.1841, British patent no. 8,796 (carding machine). 1842, British patent no. 9,313 (carding machine).1844, British patent no. 10,080.Further ReadingE.Leigh, 1875, The Science of Modern Cotton Spinning Manchester (provides a good account of Smith's carding engine).W.English, 1969, The Textile Industry, London (covers the development of the carding engine).RLH -
47 WMC
1) Военный термин: Weapons Mobility Command, weapons monitoring center, weapons monitoring console2) Техника: Washing Machine Controller4) Юридический термин: Was Mentally Corrupted5) Дипломатический термин: World Muslim Congress6) Сокращение: Waste Of Money Conference7) Университет: Winter Music Conference8) Фирменный знак: Wisconsin Manufacturers And Commerce9) Экология: World Meteorological Center10) Расширение файла: WordPerfect for Windows Macro file, Workflow Management Coalition11) Нефть и газ: Waste Management Complex12) Карачаганак: clean treated solids, Комплекс Утилизации Отходов (Waste Management Complex)13) Должность: Washington Management Consultant14) NYSE. W M C, Ltd. -
48 elaborate
1. adjectivekompliziert; ausgefeilt [Stil]; durchorganisiert [Studium, Forschung]; kunstvoll [gearbeitet] [Arrangement, Verzierung, Kleidungsstück]; üppig [Menü]2. transitive verbweiter ausarbeiten; weiter ausführen [Arbeit, Plan, Thema]3. intransitive verbcould you elaborate [on that]? — könnten Sie das näher ausführen?
* * *1. [i'læbəreit] verb1) (to work out or describe (a plan etc) in detail: He elaborated his theory.) sorgfältig ausarbeiten2) ((especially with on) to discuss details: She elaborated on the next day's menu.) genau2. [-rət] adjective1) (very detailed or complicated: an elaborate design.) kunstvoll2) (carefully planned: elaborate plans for escape.) sorgfältig ausgearbeitet•- academic.ru/23594/elaborately">elaborately- elaboration* * *elabo·rateI. adj[ɪˈlæbərət, AM -ɚət]1. (not simple) design, pattern kompliziert, raffiniert; clothes, decorations kunstvoll [gearbeitet]; style of writing ausgefeilt; banquet aufwändig, üppigII. vi[ɪˈlæbəreɪt, AM -ɚeɪt]ins Detail gehen▪ to \elaborate on sth etw näher ausführen [o ausführlich behandeln], auf etw akk ausführlich eingehen* * *[I'lbərIt]1. adj1) (= complex, over-complex) machine, equipment, procedure, ritual, system, network kompliziert; (= sophisticated) ausgeklügelt; scheme groß angelegt; precautions, efforts, plans umfangreich; (= sophisticated) preparations ausführlich; cooking, ceremony, design aufwendig, aufwändigan elaborate hoax/plot — ein ausgeklügelter Schwindel/Plan
2. vt[I'lbəreɪt]1) (= expand in words) statement, remark weiter ausführento elaborate sth further — auf etw acc näher eingehen
3. vi[I'lbəreɪt]it isn't a statement I want to elaborate on — zu dieser Feststellung möchte ich mich nicht weiter äußern
* * *A adj [ıˈlæbərıt]1. sorgfältig oder kunstvoll gearbeitet oder ausgeführt, (in allen Einzelheiten) vollendet (Ornament etc)2. (wohl) durchdacht, (sorgfältig) ausgearbeitet (Bericht etc)3. a) kunstvoll, kompliziertb) umständlich (Beschreibung etc)B v/t [-reıt]1. sorgfältig oder bis ins Einzelne ausarbeiten, vervollkommnen2. eine Theorie etc entwickeln3. (mühsam) herausarbeiten4. BIOLa) umbildenb) organische Verbindungen entwickelnC v/i [-reıt] nähere Angaben machen:* * *1. adjectivekompliziert; ausgefeilt [Stil]; durchorganisiert [Studium, Forschung]; kunstvoll [gearbeitet] [Arrangement, Verzierung, Kleidungsstück]; üppig [Menü]2. transitive verbweiter ausarbeiten; weiter ausführen [Arbeit, Plan, Thema]3. intransitive verbcould you elaborate [on that]? — könnten Sie das näher ausführen?
* * *adj.ausarbeitend adj.kompliziert adj. v.ausarbeiten v. -
49 composition
1. композиция; состав; смесь2. набор3. компоновка; вёрсткаcomposition mode — режим компоновки, режим вёрстки
4. монтаж5. вальцмасса; мастика6. литературное произведение7. покровная композиция8. копировальный слой9. фотонабор10. набор на наборно-пишущих машинах, машинописный наборcomputerized composition — набор с помощью ЭВМ, компьютеризованный набор
11. крупнокегельный набор12. набор акцидентных объявлений13. набор выделительным шрифтомelectronic composition — электронный набор, набор, осуществляемый электронными средствами
14. бесплёночный набор15. бесплёночная вёрстка, вёрстка на видеотерминале с кодированной записьюhot-metal composition — набор на букво- и строкоотливных наборных машинах, металлический набор
line composition — строкоотливной набор; набор на строкоотливной машине
mathematic composition — математический набор; формульный набор
16. набор полосы, пополосный набор17. вёрстка полосы набора, пополосная вёрстка18. пополосный монтаж19. пополосный набор по пакетной программе20. пополосная пакетная вёрсткаphotocurable composition — композиция, способная к отверждению под действием света, фотосшиваемая композиция
ragged-left composition — набор с рваным левым краем; набор без выключки
ragged-right composition — набор с рваным правым краем; набор без выключки
strike-on composition — набор на наборно-пишущих машинках; машинописный набор
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50 Thinking
But what then am I? A thing which thinks. What is a thing which thinks? It is a thing which doubts, understands, [conceives], affirms, denies, wills, refuses, which also imagines and feels. (Descartes, 1951, p. 153)I have been trying in all this to remove the temptation to think that there "must be" a mental process of thinking, hoping, wishing, believing, etc., independent of the process of expressing a thought, a hope, a wish, etc.... If we scrutinize the usages which we make of "thinking," "meaning," "wishing," etc., going through this process rids us of the temptation to look for a peculiar act of thinking, independent of the act of expressing our thoughts, and stowed away in some particular medium. (Wittgenstein, 1958, pp. 41-43)Analyse the proofs employed by the subject. If they do not go beyond observation of empirical correspondences, they can be fully explained in terms of concrete operations, and nothing would warrant our assuming that more complex thought mechanisms are operating. If, on the other hand, the subject interprets a given correspondence as the result of any one of several possible combinations, and this leads him to verify his hypotheses by observing their consequences, we know that propositional operations are involved. (Inhelder & Piaget, 1958, p. 279)In every age, philosophical thinking exploits some dominant concepts and makes its greatest headway in solving problems conceived in terms of them. The seventeenth- and eighteenth-century philosophers construed knowledge, knower, and known in terms of sense data and their association. Descartes' self-examination gave classical psychology the mind and its contents as a starting point. Locke set up sensory immediacy as the new criterion of the real... Hobbes provided the genetic method of building up complex ideas from simple ones... and, in another quarter, still true to the Hobbesian method, Pavlov built intellect out of conditioned reflexes and Loeb built life out of tropisms. (S. Langer, 1962, p. 54)Experiments on deductive reasoning show that subjects are influenced sufficiently by their experience for their reasoning to differ from that described by a purely deductive system, whilst experiments on inductive reasoning lead to the view that an understanding of the strategies used by adult subjects in attaining concepts involves reference to higher-order concepts of a logical and deductive nature. (Bolton, 1972, p. 154)There are now machines in the world that think, that learn and create. Moreover, their ability to do these things is going to increase rapidly until-in the visible future-the range of problems they can handle will be coextensive with the range to which the human mind has been applied. (Newell & Simon, quoted in Weizenbaum, 1976, p. 138)But how does it happen that thinking is sometimes accompanied by action and sometimes not, sometimes by motion, and sometimes not? It looks as if almost the same thing happens as in the case of reasoning and making inferences about unchanging objects. But in that case the end is a speculative proposition... whereas here the conclusion which results from the two premises is an action.... I need covering; a cloak is a covering. I need a cloak. What I need, I have to make; I need a cloak. I have to make a cloak. And the conclusion, the "I have to make a cloak," is an action. (Nussbaum, 1978, p. 40)It is well to remember that when philosophy emerged in Greece in the sixth century, B.C., it did not burst suddenly out of the Mediterranean blue. The development of societies of reasoning creatures-what we call civilization-had been a process to be measured not in thousands but in millions of years. Human beings became civilized as they became reasonable, and for an animal to begin to reason and to learn how to improve its reasoning is a long, slow process. So thinking had been going on for ages before Greece-slowly improving itself, uncovering the pitfalls to be avoided by forethought, endeavoring to weigh alternative sets of consequences intellectually. What happened in the sixth century, B.C., is that thinking turned round on itself; people began to think about thinking, and the momentous event, the culmination of the long process to that point, was in fact the birth of philosophy. (Lipman, Sharp & Oscanyan, 1980, p. xi)The way to look at thought is not to assume that there is a parallel thread of correlated affects or internal experiences that go with it in some regular way. It's not of course that people don't have internal experiences, of course they do; but that when you ask what is the state of mind of someone, say while he or she is performing a ritual, it's hard to believe that such experiences are the same for all people involved.... The thinking, and indeed the feeling in an odd sort of way, is really going on in public. They are really saying what they're saying, doing what they're doing, meaning what they're meaning. Thought is, in great part anyway, a public activity. (Geertz, quoted in J. Miller, 1983, pp. 202-203)Everything should be made as simple as possible, but not simpler. (Einstein, quoted in Minsky, 1986, p. 17)What, in effect, are the conditions for the construction of formal thought? The child must not only apply operations to objects-in other words, mentally execute possible actions on them-he must also "reflect" those operations in the absence of the objects which are replaced by pure propositions. Thus, "reflection" is thought raised to the second power. Concrete thinking is the representation of a possible action, and formal thinking is the representation of a representation of possible action.... It is not surprising, therefore, that the system of concrete operations must be completed during the last years of childhood before it can be "reflected" by formal operations. In terms of their function, formal operations do not differ from concrete operations except that they are applied to hypotheses or propositions [whose logic is] an abstract translation of the system of "inference" that governs concrete operations. (Piaget, quoted in Minsky, 1986, p. 237)[E]ven a human being today (hence, a fortiori, a remote ancestor of contemporary human beings) cannot easily or ordinarily maintain uninterrupted attention on a single problem for more than a few tens of seconds. Yet we work on problems that require vastly more time. The way we do that (as we can observe by watching ourselves) requires periods of mulling to be followed by periods of recapitulation, describing to ourselves what seems to have gone on during the mulling, leading to whatever intermediate results we have reached. This has an obvious function: namely, by rehearsing these interim results... we commit them to memory, for the immediate contents of the stream of consciousness are very quickly lost unless rehearsed.... Given language, we can describe to ourselves what seemed to occur during the mulling that led to a judgment, produce a rehearsable version of the reaching-a-judgment process, and commit that to long-term memory by in fact rehearsing it. (Margolis, 1987, p. 60)Historical dictionary of quotations in cognitive science > Thinking
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51 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 -
52 robot
робот; робототехническое устройство-
adaptive robot
-
advanced robot
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air-driven robot
- all electric drive robot -
anthropomorphous robot
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arm-on-the-post type robot
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articulated-arm robot
-
articulated robot
-
artificial intelligence robot
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assembly robot
-
auxiliary robot
-
biotechnical robot
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biped robot
-
blind robot
-
built-in robot
-
cartesian coordinate robot
-
commercial robot
-
complex robot
-
computerized robot
-
continuous-path robot
-
contouring robot
-
cylindrical coordinate robot
-
cylindric coordinate robot
-
dedicated robot
-
direct-drive robot
-
dispensing robot
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distribution robot
-
domestic robot
-
electric robot
-
exploration robot
-
eye-in-hand robot
-
finishing robot
-
first-generation robot
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fixed robot
-
fixed-sequence robot
-
fixed-stop robot
-
flexible robot
-
floor-mounted robot
-
forging robot
-
free-range robot
-
free-standing robot
-
gantry-mounted robot
-
gantry robot
-
gantry-type robot
-
generation 1 robot
-
generation 1,5 robot
-
generation 2 robot
-
generation 3 robot
-
high-technology robot
-
home robot
-
immobile robot
-
independently operated robot
-
industrial robot
-
information robot
-
in-house robot
-
insensate robot
-
inspection robot
-
integrated robot
-
intelligent robot
-
interactive robot
-
inverted robot
-
jointed-arm robot
-
limited-function robot
-
limited-sequence robot
-
loader/unloader robot
-
locomotion robot
-
logical robot
-
low-technology robot
-
machine load/unload robot
-
machine-mounted robot
-
machining robot
-
magazine robot
-
manipulation robot
-
manipulator arm-attached robot
-
master robot
-
master-slave robot
-
material-handling robot
-
material-processing robot
-
measuring robot
-
medium-technology robot
-
micro robot
-
microprocessor-based robot
-
mining robot
-
mobile robot
-
modular robot
-
moon robot
-
multiarm robot
-
multiaxis robot
-
multifunctional robot
-
multilegged robot
-
multipurpose robot
-
numerically controlled robot
-
observing robot
-
office robot
-
open-loop robot
-
overhead robot
-
packaging robot
-
painting robot
-
pallet changing robot
-
palletizing robot
-
pedestal-mounted robot
-
pick-and-place robot
-
playback robot
-
pneumatically powered robot
-
pogo-stick robot
-
point-to-point robot
-
polar coordinate robot
-
polishing robot
-
press robot
-
processing robot
-
process robot
-
production-line robot
-
programmable robot
-
programmed on-line robot
-
prosthetic robot
-
prototype robot
-
rectangular coordinate robot
-
redundant robot
-
rehabilitation robot
-
remote-controlled robot
-
reprogrammable robot
-
retail robot
-
revolute coordinate robot
-
rigid robot
-
robot of revolute configuration
-
rotary robot
-
roving robot
-
second-generation robot
-
selecting robot
-
self-learning robot
-
self-mobile robot
-
self-repairing robot
-
self-reproduction robot
-
senseless robot
-
sensor-based robot
-
sensory interactive robot
-
sequence robot
-
servo robot
-
single-purpose robot
-
smart robot
-
softwired robot
-
space robot
-
spare robot
-
special robot
-
spherical coordinate robot
-
spheric coordinate robot
-
spot-welding robot
-
spray-finishing robot
-
stacker crane robot
-
stand-alone robot
-
stationary robot
-
super-intelligent robot
-
supervisor robot
-
task robot
-
teachable robot
-
technological robot
-
term robot
-
third-generation robot
-
tool changer robot
-
transport robot
-
two-handed robot
-
undersea robot
-
universal robot
-
unmanned robot
-
variable-sequence robot
-
vehicle robot
-
vision-controlled robot
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voice-activated robot
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walking robot
-
wall-mounted robot
-
welding robot
-
wheeled robot
-
work-performing robot -
53 theory
1) теория•-
Abbe's theory
-
Abbe theory
-
absolute reaction rate theory
-
acid-basic catalysis theory
-
adhesive theory of friction
-
affinity theory
-
age theory
-
Airy-Stokes theory
-
approximation theory
-
Arrhenius theory
-
association theory
-
automata theory
-
automatic control theory
-
behavior theory of canals
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boundary-layer interaction theory
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boundary-layer theory
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Bronsted theory
-
bunching theory
-
catastrophe theory
-
chemical graph theory
-
chemical kinetics theory
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circuit theory
-
coding theory
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combinatorial theory
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communications theory
-
communication theory
-
constant angle theory of arch dam design
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contact clastohydrodynamic theory
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control theory
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control-system theory
-
coordination theory
-
Coulomb's wedge theory
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cylinder theory of arch dam design
-
delamination theory of wear
-
diffraction theory
-
diffusion theory
-
dispersion theory
-
dissociation theory
-
donor-acceptor interaction theory
-
double shear theory
-
drag theory
-
effective arch theory
-
elastic theory
-
elastic wave theory
-
elasticity theory
-
electromagnetic field theory
-
electromagnetic theory
-
energetical wear theory
-
erosion theory
-
estimation theory
-
evaporation theory
-
fatigue theory of wear
-
fatigue theory
-
field theory
-
filter theory
-
flash temperature theory
-
Flory theory
-
free space theory
-
free volume theory
-
free-electron theory of metals
-
fuzzy-set theory
-
game theory
-
general theory
-
generalized electric machine theory
-
graph theory
-
gravitational theory
-
gravitation theory
-
group theory
-
handling theory
-
hydroxo-complex theory
-
imperfection theory
-
information theory
-
ionic theory
-
kinetic theory of gases
-
kinetic theory of liquids
-
local theory
-
logic theory
-
long-range stress theory
-
magnetic field theory
-
magnetotelluric theory
-
mapping theory
-
mathematical economic theory
-
maximum shear theory
-
maximum strain energy theory
-
Maxwell's electromagnetic theory
-
mechanical interlocking friction theory
-
membrane theory
-
mixing length theory
-
model theory
-
molecular attraction friction theory
-
molecular theory
-
molecular-kinetic theory
-
molecular-mechanical theory of friction
-
mosaic-block theory
-
multienergy-group diffusion theory
-
multigroup theory
-
multiple catalysis theory
-
multiple seismometer theory
-
network flow theory
-
network theory
-
nuclear drop theory
-
nuclear theory
-
number theory
-
nutrient theory
-
one-speed diffusion theory
-
oxidational theory of wear
-
oxide-film barrier theory
-
oxyacid theory
-
oxygen attack theory
-
peracid theory of gum formation
-
perturbation theory
-
plastic collapse theory
-
plastic theory
-
plasticity theory
-
plate theory
-
potential field theory
-
potential theory
-
prediction theory
-
probability theory
-
quantum field theory
-
quantum theory of light
-
queueing theory
-
queuing theory
-
radiometry theory
-
Rankine's theory
-
ray-path theory
-
ray theory
-
reflection theory
-
refraction theory
-
regime theory of rivers
-
renewal theory
-
scaled-particle theory
-
seismic theory
-
set theory
-
solid-state theory
-
solvation theory
-
stability theory
-
statistical-decision theory
-
steady-state creep theory
-
superlattice theory
-
system theory
-
theory of algorithms
-
theory of chances
-
theory of elasticity
-
theory of errors
-
theory of failure
-
theory of functions
-
theory of lateral earth pressure
-
theory of limits
-
theory of magnetism
-
theory of oscillations
-
theory of plasticity
-
theory of reliability
-
theory of scheduling
-
theory of screws
-
theory of similarity
-
theory of specific heats
-
theory of stream lines
-
theory of strength
-
theory of testing
-
theory of thermoelastic instability of contact
-
theory of vibrations
-
thermodiffusion theory
-
thermofluctuational strength theory
-
tidal-wave theory
-
tractive-force theory
-
transition state theory
-
transport theory
-
unified electrical machine theory
-
utility theory
-
valence bond theory
-
valency theory
-
variable-radius theory
-
wave theory of light
-
welding-shearing friction theory
-
zone theory of solids -
54 ABC
1) Общая лексика: hum. сокр. Across Breed Comparison, алфавитный указатель (железнодорожный), атомный, биологический и химический, букварь, железнодорожный алфавитный указатель, начатки, простейший, простой, самые простые знания и понятия, азбука, алфавит, азбука, алфавит, основы2) Компьютерная техника: Abstract Base Class, Approximate Bootstrap Confidence, Atanasoff Berry Computer4) Спорт: Adventure Balance And Challenge, Agility Balance And Coordination, American Bowling Congress, Another Blowout Coming, Anybody But Carolina, Association Of Boxing Commissions5) Военный термин: Advanced Blade Concept, Air Bridge to Canada, Airborne Command, Airborne Corps, All Blocks Covered, Allied Baltic Command, American, British, and Canadian, American-British-Canadian, Army Battle Command, Asian Brown Cloud, Atomic Bacterial Chemical, advanced basing concept, advanced biomedical capsule, air bubble craft, airborne cigar, airborne control, assistant beach commander6) Техника: ABC method, American bibliographic benter, absolute binary code, after bottom center, after bottom dead center, air-blast cooled, augmented bibliographic citation, automatic bass control, automatic bias compensation, automatic blip counter, блок питания накала, анода и сетки, справочник железнодорожных станций с расписанием поездов7) Сельское хозяйство: abscess8) Шутливое выражение: A Bored Capitalist, A Boring Channel, Absolute Best Channel, Absolutely Boring Comedy, All Bout Cancellations, Already Been Cancelled, Always Be Cool, Always Burn Colorado, Americas Bin Collapsed, Another Bad Choice, Another Book Club, Anything But Chaos, Anything But Competence, The Almost Broadcasting Company9) Химия: Alkali Bearing Carrier10) Религия: A Better Chance, About Bethlehem Centers, Adult Bible Community, Agape Book Club, All Believe Confess, American Bible Channel, Arts Based Church, грамота, азы11) Железнодорожный термин: Air Brakes And Chain12) Юридический термин: A Big Clue, Alcohol Beverage Control, Always Be Careful, Attorneys, Bankers, And Cpas, transaction13) Бухгалтерия: Accountability Basics And Control, Analyze Bill And Control14) Фармакология: abacavir (абакавир)15) Финансы: анализ затрат по видам16) Австралийский сленг: Australian Broadcasting Corporation, австралийский государственный телерадиоканал17) Ветеринария: Agricultural Biotechnology Center18) Грубое выражение: A Big Cockup, Absolute Bullshit Channel, Absolutely Bloody Crap, Always Be Caucasian, Always Been Crappy, Anything But Crap19) Горное дело: наставление, памятка, руководство, элементарный курс20) Кино: Эй-би-си21) Политика: Anybody But Clinton22) Презрительное выражение: American Born Chinese23) Телевидение: automatic brightness limiter24) Сокращение: Activity Based Costing (2002), Activity Based Costing, Advanced Ballistic Concept, Advanced Bar Code: 62 bar POSTNET code representing 11 digit ZIP (see DPBC), Advanced/ing Blade Concept, Aerated Bread Company, Alcoholic Beverage Control, All-purpose Ballastable Crawler, All-purpose Battle Computer, America, Britain & Canada, American Broadcast Company, American Broadcasting Corporation, Argentina, Brazil, Chile, Aruba, Bonaire, And Curacao, Associated British Pictures Corporation, Atomic, Bacteriological, Chemical (warfare), Atomic, Biological / Bacteriological & Chemical, Audit Bureau of Circulations Inc. (for 2nd class permit audits), Australian Broadcasting Commission, Automatic Boost Control, Automatic Brightness Control, atomic, bacteriological and chemical, atomic, biological and chemical, American Broadcasting Company, вычислительная машина Атанасова - Берри (Atanasoff-Berry Computer - first digital calculating machine that used vacuum tubes), American Brahma Club (Американский клуб специалистов по разведению кур породы бра(х)мапутра), American Bowling Congress (Американский конгресс (федерация клубов) игры в боулинг (кегли)), Arab Banking Corporation (Арабская банковская ассоциация), Automotive Booster Clubs International (Международная федерация клубов продавцов автомобильных запасных частей (США)), Associated British Cinemas (Объединение английских кинотеатров), automatic bass compensation (автоматическая коррекция нижних (звуковых) частот), automatic background control (автоматическая регулировка яркости( фона)), automatic blade control (автоматическое управление отвалом (плуга, бульдозера и т.п.)), accounting and budgetary control (бухгалтерско-бюджетный контроль), automatic binary computer (двоичная автоматическая вычислительная машина (устаревший термин)), air blast cooled (с воздушным охлаждением), aggregate base course (щебеночный подстилающий слой), Already Been Chewed, Absorbing boundary condition25) Университет: About Basic Composition, Academics Business And Community, Anchorage Basic Curriculum, Atlantic Baptist College26) Физиология: Absolute Brain Control, Abstinence Behavioral Change, Airway Breathing And Circulation, Airway Breathing Circulation, Airway Breathing Cold, Always Breastfeed Children, Aspiration, Biopsy, Cytology, Atp Binding Cassette, Automated Blood Collection27) Электроника: Already Been Converted, Automatic Background Calibration28) Вычислительная техника: Atanasoff-Berry Computer (First digital calculating machine that used vacuum tubes), activity-based costing, analog boundary cell, American Broadcasting Company (Corporate name), классы построения приложения, оплата на базе фактического использования, функционально-стоимостный анализ29) Нефть: automatic bandwidth control, control30) Иммунология: Adaptive Behavior Center, Antibody Binding Capacity, antigen-binding capacity, Avidin and Biotinylated horseradish peroxidase macro-molecular Complex31) Онкология: Advanced Breast Cancer32) Португальский язык: Бразильская академия наук (сокр. от Academia Brasileira de Ciências = Brazilian Academy of Sciences)33) Транспорт: Air Brake Converted, Aluminum Brass Chrome34) Пищевая промышленность: Absolute Best Chewy, All Beer Cleaning, Apples, Bananas, And Carrots, Applesauce, Bran, and Cinnamon35) Воздухоплавание: Advance Booking Charter36) Двигатели внутреннего сгорания: после нижней мёртвой точки, за нижней мёртвой точкой (сокр. от after bottom (dead) centre)37) Фирменный знак: Alpha Beta Camera, Antwerp Book Capital, Associated British Corporation38) Экология: Association of Boards of Certification for Operating Personnel in Water and Wastewater Utilities, Association of British Climatologists39) Реклама: Бюро по Исследованию Тиражей США40) СМИ: Access Beauty And Character, Always Be Canceling my favorite shows, American Broadcasting Companies, Associated British Cinemas, Audit Bureau Of Circulation, Audit Bureau Of Circulations, Australian Broadcasting Company41) Деловая лексика: A Better Company, A Board Committed, A Business Commitment, Allocation Budget And Contract, Always Be Closing, Always Bring Cash, Analysis Building And Cleaning, Appropriate Business Casual, расчёт себестоимости по объёму хозяйственной стоимости (Activity Based Costing)42) Глоссарий компании Сахалин Энерджи: type of fire extinguisher43) Образование: Anti Bullying Commitee, Attentional Behavioral Cognitive, Attitude Behavior Consistency44) Сетевые технологии: Application Building Classes45) Полимеры: assisted biological coagulation46) Макаров: начальные положения, элементарный, элементы47) Аэродинамика: концепция набегающей (идущей вперёд) лопасти (летательного аппарата с вращающимися крыльями) (сокр. от advancing-blade concept)48) Военно-морской флот: главный старшина авиационной боцманской команды (на авианосце) (сокр. от Chief Aviation Boatswain's Mate)49) Расширение файла: ABC FlowCharter Document, ABC programming language General filename extension, Musical notation language file (folk melodies)50) Нефть и газ: advanced blending control51) Электротехника: armored bushing cable52) Молекулярная биология: adenosine triphosphate-binding cassette53) ООН: A Bunch of Communists54) Общественная организация: American Bird Conservancy55) НАСА: Active Body Control56) Библиотечное дело: American Bibliographical Center57) Базы данных: Alphabetically Based Computerized58) Альпинизм: advanced base camp -
55 abc
1) Общая лексика: hum. сокр. Across Breed Comparison, алфавитный указатель (железнодорожный), атомный, биологический и химический, букварь, железнодорожный алфавитный указатель, начатки, простейший, простой, самые простые знания и понятия, азбука, алфавит, азбука, алфавит, основы2) Компьютерная техника: Abstract Base Class, Approximate Bootstrap Confidence, Atanasoff Berry Computer4) Спорт: Adventure Balance And Challenge, Agility Balance And Coordination, American Bowling Congress, Another Blowout Coming, Anybody But Carolina, Association Of Boxing Commissions5) Военный термин: Advanced Blade Concept, Air Bridge to Canada, Airborne Command, Airborne Corps, All Blocks Covered, Allied Baltic Command, American, British, and Canadian, American-British-Canadian, Army Battle Command, Asian Brown Cloud, Atomic Bacterial Chemical, advanced basing concept, advanced biomedical capsule, air bubble craft, airborne cigar, airborne control, assistant beach commander6) Техника: ABC method, American bibliographic benter, absolute binary code, after bottom center, after bottom dead center, air-blast cooled, augmented bibliographic citation, automatic bass control, automatic bias compensation, automatic blip counter, блок питания накала, анода и сетки, справочник железнодорожных станций с расписанием поездов7) Сельское хозяйство: abscess8) Шутливое выражение: A Bored Capitalist, A Boring Channel, Absolute Best Channel, Absolutely Boring Comedy, All Bout Cancellations, Already Been Cancelled, Always Be Cool, Always Burn Colorado, Americas Bin Collapsed, Another Bad Choice, Another Book Club, Anything But Chaos, Anything But Competence, The Almost Broadcasting Company9) Химия: Alkali Bearing Carrier10) Религия: A Better Chance, About Bethlehem Centers, Adult Bible Community, Agape Book Club, All Believe Confess, American Bible Channel, Arts Based Church, грамота, азы11) Железнодорожный термин: Air Brakes And Chain12) Юридический термин: A Big Clue, Alcohol Beverage Control, Always Be Careful, Attorneys, Bankers, And Cpas, transaction13) Бухгалтерия: Accountability Basics And Control, Analyze Bill And Control14) Фармакология: abacavir (абакавир)15) Финансы: анализ затрат по видам16) Австралийский сленг: Australian Broadcasting Corporation, австралийский государственный телерадиоканал17) Ветеринария: Agricultural Biotechnology Center18) Грубое выражение: A Big Cockup, Absolute Bullshit Channel, Absolutely Bloody Crap, Always Be Caucasian, Always Been Crappy, Anything But Crap19) Горное дело: наставление, памятка, руководство, элементарный курс20) Кино: Эй-би-си21) Политика: Anybody But Clinton22) Презрительное выражение: American Born Chinese23) Телевидение: automatic brightness limiter24) Сокращение: Activity Based Costing (2002), Activity Based Costing, Advanced Ballistic Concept, Advanced Bar Code: 62 bar POSTNET code representing 11 digit ZIP (see DPBC), Advanced/ing Blade Concept, Aerated Bread Company, Alcoholic Beverage Control, All-purpose Ballastable Crawler, All-purpose Battle Computer, America, Britain & Canada, American Broadcast Company, American Broadcasting Corporation, Argentina, Brazil, Chile, Aruba, Bonaire, And Curacao, Associated British Pictures Corporation, Atomic, Bacteriological, Chemical (warfare), Atomic, Biological / Bacteriological & Chemical, Audit Bureau of Circulations Inc. (for 2nd class permit audits), Australian Broadcasting Commission, Automatic Boost Control, Automatic Brightness Control, atomic, bacteriological and chemical, atomic, biological and chemical, American Broadcasting Company, вычислительная машина Атанасова - Берри (Atanasoff-Berry Computer - first digital calculating machine that used vacuum tubes), American Brahma Club (Американский клуб специалистов по разведению кур породы бра(х)мапутра), American Bowling Congress (Американский конгресс (федерация клубов) игры в боулинг (кегли)), Arab Banking Corporation (Арабская банковская ассоциация), Automotive Booster Clubs International (Международная федерация клубов продавцов автомобильных запасных частей (США)), Associated British Cinemas (Объединение английских кинотеатров), automatic bass compensation (автоматическая коррекция нижних (звуковых) частот), automatic background control (автоматическая регулировка яркости( фона)), automatic blade control (автоматическое управление отвалом (плуга, бульдозера и т.п.)), accounting and budgetary control (бухгалтерско-бюджетный контроль), automatic binary computer (двоичная автоматическая вычислительная машина (устаревший термин)), air blast cooled (с воздушным охлаждением), aggregate base course (щебеночный подстилающий слой), Already Been Chewed, Absorbing boundary condition25) Университет: About Basic Composition, Academics Business And Community, Anchorage Basic Curriculum, Atlantic Baptist College26) Физиология: Absolute Brain Control, Abstinence Behavioral Change, Airway Breathing And Circulation, Airway Breathing Circulation, Airway Breathing Cold, Always Breastfeed Children, Aspiration, Biopsy, Cytology, Atp Binding Cassette, Automated Blood Collection27) Электроника: Already Been Converted, Automatic Background Calibration28) Вычислительная техника: Atanasoff-Berry Computer (First digital calculating machine that used vacuum tubes), activity-based costing, analog boundary cell, American Broadcasting Company (Corporate name), классы построения приложения, оплата на базе фактического использования, функционально-стоимостный анализ29) Нефть: automatic bandwidth control, control30) Иммунология: Adaptive Behavior Center, Antibody Binding Capacity, antigen-binding capacity, Avidin and Biotinylated horseradish peroxidase macro-molecular Complex31) Онкология: Advanced Breast Cancer32) Португальский язык: Бразильская академия наук (сокр. от Academia Brasileira de Ciências = Brazilian Academy of Sciences)33) Транспорт: Air Brake Converted, Aluminum Brass Chrome34) Пищевая промышленность: Absolute Best Chewy, All Beer Cleaning, Apples, Bananas, And Carrots, Applesauce, Bran, and Cinnamon35) Воздухоплавание: Advance Booking Charter36) Двигатели внутреннего сгорания: после нижней мёртвой точки, за нижней мёртвой точкой (сокр. от after bottom (dead) centre)37) Фирменный знак: Alpha Beta Camera, Antwerp Book Capital, Associated British Corporation38) Экология: Association of Boards of Certification for Operating Personnel in Water and Wastewater Utilities, Association of British Climatologists39) Реклама: Бюро по Исследованию Тиражей США40) СМИ: Access Beauty And Character, Always Be Canceling my favorite shows, American Broadcasting Companies, Associated British Cinemas, Audit Bureau Of Circulation, Audit Bureau Of Circulations, Australian Broadcasting Company41) Деловая лексика: A Better Company, A Board Committed, A Business Commitment, Allocation Budget And Contract, Always Be Closing, Always Bring Cash, Analysis Building And Cleaning, Appropriate Business Casual, расчёт себестоимости по объёму хозяйственной стоимости (Activity Based Costing)42) Глоссарий компании Сахалин Энерджи: type of fire extinguisher43) Образование: Anti Bullying Commitee, Attentional Behavioral Cognitive, Attitude Behavior Consistency44) Сетевые технологии: Application Building Classes45) Полимеры: assisted biological coagulation46) Макаров: начальные положения, элементарный, элементы47) Аэродинамика: концепция набегающей (идущей вперёд) лопасти (летательного аппарата с вращающимися крыльями) (сокр. от advancing-blade concept)48) Военно-морской флот: главный старшина авиационной боцманской команды (на авианосце) (сокр. от Chief Aviation Boatswain's Mate)49) Расширение файла: ABC FlowCharter Document, ABC programming language General filename extension, Musical notation language file (folk melodies)50) Нефть и газ: advanced blending control51) Электротехника: armored bushing cable52) Молекулярная биология: adenosine triphosphate-binding cassette53) ООН: A Bunch of Communists54) Общественная организация: American Bird Conservancy55) НАСА: Active Body Control56) Библиотечное дело: American Bibliographical Center57) Базы данных: Alphabetically Based Computerized58) Альпинизм: advanced base camp -
56 ECM
1. effective complex modulus - эффективный комплексный модуль;2. electrochemical machining - электрохимическая обработка;3. electronic cipher [ciphering] machine - электронная шифровальная машина;4. electronic coding machine - электронная кодирующая машина;5. electronic control module - электронный блок управления;6. electronic countermeasures - радиоэлектронное подавление; РЭП;7. electronic countermeasures mission - задача по радиоэлектронному подавлению;8. ellipsoid collector mirror - эллипсоидное собирающее зеркало;9. emission characteristics monitor - аппаратура контроля характеристик излучения;10. error correcting memory - память с исправлением ошибок;11. extended core memory - расширенная намять на магнитных сердечниках; расширенное ЗУ на магнитных сердечниках;13. энергия в системе центра масс -
57 shut down
<el> (major electr. plant, system, component) ■ abgeschaltet; ausgeschaltet rarvt <tech.gen> (complex system; e.g. machine, plant, operating system; not final) ■ herunterfahren vt ; abfahren vt prakt ; ausschalten vt ugsvt <tech.gen> (final; e.g. plant) ■ stilllegen vt ; außer Betrieb setzen vt ; außer Betrieb nehmen vtvt <mech.eng> (machine; e.g. pump, engine) ■ abschalten vt ; abstellen vt ; stillsetzen vt ; abfahren vt rar -
58 glass
1. стекло2. стеклянная оптика, pl очки3. стакан, бокал4. зеркало- A glass- acid-etched glass
- acidproof glass
- acid-resistant glass
- aircraft glass
- alabaster glass
- alarm glass
- alkali glass
- alkali-free glass
- alkaline earth glass
- alkali-resistant glass
- alumina glass
- aluminate glass
- aluminosilicate glass
- amber glass
- ampule glass
- ancient glass
- annealed glass
- antique glass
- apparatus glass
- architectural glass
- armored glass
- art glass
- auto glass
- automobile glass
- aventurine glass
- banded glass
- barium crystal glass
- baryta crown glass
- basalt glass
- base glass
- bent glass
- beveled glass
- binary glass
- blank glass
- blistery glass
- blown glass
- Bohemian glass
- Bohemian crystal glass
- bone glass
- borate glass
- borax glass
- borosilicate glass
- bottle glass
- bottom glass
- broken glass
- brown glass
- bubble glass
- building glass
- bulb glass
- bulletproof glass
- bull's eye glass
- cadmium sulfide glass
- cadmium sulfoselenide glass
- cased glass
- cast glass
- cathedral glass
- cellular glass
- ceramic-coated glass
- ceramized glass
- cerise glass
- cerium-decolorized glass
- chalcogenide glass
- chemical glass
- chemically strengthened glass
- chilled glass
- cladding glass
- clear glass
- clock glass
- clouded glass
- cloudy glass
- coated glass
- cobalt glass
- colloidal glass
- colored glass
- colorless glass
- commercial glass
- complex glass
- construction glass
- container glass
- cooking glass
- cool glass
- copper ruby glass
- cord glass
- cordy glass
- corrugated glass
- Coulbern glass
- cover glass
- cover-coat glass
- crown glass
- crushed glass
- crystal glass
- crystal-sheet glass
- cupping glass
- curved glass
- cylinder glass
- dead glass
- decolorized glass
- decorated glass
- decorative glass
- depolished glass
- devitrified glass
- devitrifying glass
- dichroic glass
- diffuse glass
- diffusing glass
- dimming glass
- disperse-strengthened glass
- dolomite glass
- domestic glass
- doped glass
- double glass
- double-water glass
- drawn glass
- dull glass
- durable glass
- E glass
- electric glass
- electrically conducted glass
- electrode glass
- etched glass
- extra-thick sheet glass
- extra-thin sheet glass
- eye-protecting glass
- fancy glass
- fast-setting glass
- feldspar glass
- fiber glass
- fiberizable glass
- fibrous glass
- fine-annealed glass
- fined glass
- fireproof glass
- flame-protection glass
- flame-resisting glass
- flashed glass
- flat glass
- flint glass
- float glass
- float-process glass
- fluid glass
- fluorescent glass
- fluoride glass
- fluoride opal glass
- foam glass
- foamed glass
- Fourcault glass
- free-blown glass
- frit glass
- frosted glass
- full crystal glass
- glazing plate glass
- granulated glass
- gray glass
- green glass
- greenhouse glass
- hammered glass
- handblown glass
- hand-made glass
- hard glass
- hardened glass
- heat-absorbing glass
- heat-insulating glass
- heat-intercepting glass
- heat-resisting glass
- heat shock resistant glass
- heat-strengthened glass
- heat-transmitting glass
- high-fusible glass
- high-melting glass
- high-silica glass
- high-transmission glass
- hollow glass
- homogeneous glass
- host glass
- household glass
- hydratable glass
- illuminating glass
- illuminator glass
- infrared glass
- infrared-absorbing glass
- inhomogeneous glass
- inorganic glass
- insulating glass
- insulator glass
- jewelry glass
- laboratory glass
- laminated glass
- lamp glass
- laser glass
- lead glass
- lead crystal glass
- lead-free glass
- light glass
- lime-soda glass
- liquid glass
- long glass
- long crown glass
- low-alkali glass
- low-expansion glass
- low-fusible glass
- low-melting glass
- machine-drawn glass
- machine-made glass
- manifold plate glass
- marbled glass
- medical glass
- metal-coated glass
- metallized glass
- microporous glass
- milk glass
- mirror glass
- mixed-alkali glass
- modified glass
- molten glass
- molten refined glass
- multicomponent glass
- multilayer laminated glass
- natural glass
- newly melted glass
- nonshatterable glass
- nuclear waste glass
- obscured glass
- offhand glass
- opaque glass
- ophthalmic glass
- optical glass
- original glass
- ovenproof glass
- overlaid glass
- overlay glass
- oxide glass
- packing glass
- pane glass
- parent glass
- particular glass
- pharmaceutics glass
- photographic glass
- pigmented glass
- plate glass
- polymer-coated glass
- pot glass
- potash glass
- potassium glass
- powder glass
- powdered glass
- pressed glass
- protecting glass
- protection glass
- quartz glass
- quartz-like glass
- quenched glass
- quick-setting glass
- raw cast glass
- recycled glass
- reduced glass
- refined glass
- refractory glass
- rolled glass
- rough glass
- safety glass
- sand-matted glass
- scrap glass
- seedy glass
- shatterproof glass
- sheet glass
- shielding glass
- Shirasu glass
- short glass
- shotproof glass
- shunk glass
- signal glass
- silica glass
- silicate glass
- silvering glass
- silvering quality glass
- sintered glass
- skimmed glass
- slow-setting glass
- smoke glass
- smoked glass
- soda glass
- soda-ash glass
- soda-lime glass
- soda-silica glass
- soft glass
- solar-absorbing glass
- solar-reflecting glass
- soluble glass
- water glass
- special glass
- stained glass
- steady glass
- streak glass
- strengthened glass
- striated glass
- structural glass
- superhard glass
- tank glass
- technical glass
- tempered glass
- thermally strengthened glass
- thermometer glass
- three-layer sandwich glass
- toughened glass
- transparent glass
- triplex glass
- tube glass
- two-colored glass
- uviol glass
- valve-bulb glass
- volumetric glass
- waste glass
- watch glass
- water glass
- waterproof glass
- wavy glass
- white flint glass
- window glass -
59 system
1) система || системный3) вчт операционная система; программа-супервизор5) вчт большая программа6) метод; способ; алгоритм•system halted — "система остановлена" ( экранное сообщение об остановке компьютера при наличии серьёзной ошибки)
- CPsystem- H-system- h-system- hydrogen-air/lead battery hybrid system- Ksystem- Lsystem- L*a*b* system- master/slave computer system- p-system- y-system- Δ-system -
60 sophisticated
adj. geraffineerd, sophisticated; samengesteld; gecompliceerd; levenswijs; zeer ervaren[ səfistikkeetid]1 subtiel ⇒ ver ontwikkeld, verfijnd2 wereldwijs ⇒ erudiet, ontwikkeld♦voorbeelden:1 a sophisticated taste • een verfijnde/gedistingeerde smaak
См. также в других словарях:
machine tool — machine tooled, adj. a power operated machine, as a lathe, used for general cutting and shaping of metal and other substances. [1860 65] * * * Stationary, power driven machine used to cut, shape, or form materials such as metal and wood. Machine… … Universalium
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Machine embroidery — is a term that can be used to describe two different actions. The first is using a sewing machine to manually create (either freehand or with built in stitches) a design on a piece of fabric or other similar item. The second is to use a specially … Wikipedia
Machine — Ma*chine (m[.a]*sh[=e]n ), n. [F., fr. L. machina machine, engine, device, trick, Gr. ?, from ? means, expedient. Cf. {Mechanic}.] 1. In general, any combination of bodies so connected that their relative motions are constrained, and by means of… … The Collaborative International Dictionary of English
Machine gun — Machine Ma*chine (m[.a]*sh[=e]n ), n. [F., fr. L. machina machine, engine, device, trick, Gr. ?, from ? means, expedient. Cf. {Mechanic}.] 1. In general, any combination of bodies so connected that their relative motions are constrained, and by… … The Collaborative International Dictionary of English
Machine screw — Machine Ma*chine (m[.a]*sh[=e]n ), n. [F., fr. L. machina machine, engine, device, trick, Gr. ?, from ? means, expedient. Cf. {Mechanic}.] 1. In general, any combination of bodies so connected that their relative motions are constrained, and by… … The Collaborative International Dictionary of English
Machine shop — Machine Ma*chine (m[.a]*sh[=e]n ), n. [F., fr. L. machina machine, engine, device, trick, Gr. ?, from ? means, expedient. Cf. {Mechanic}.] 1. In general, any combination of bodies so connected that their relative motions are constrained, and by… … The Collaborative International Dictionary of English
Machine tool — Machine Ma*chine (m[.a]*sh[=e]n ), n. [F., fr. L. machina machine, engine, device, trick, Gr. ?, from ? means, expedient. Cf. {Mechanic}.] 1. In general, any combination of bodies so connected that their relative motions are constrained, and by… … The Collaborative International Dictionary of English
Machine twist — Machine Ma*chine (m[.a]*sh[=e]n ), n. [F., fr. L. machina machine, engine, device, trick, Gr. ?, from ? means, expedient. Cf. {Mechanic}.] 1. In general, any combination of bodies so connected that their relative motions are constrained, and by… … The Collaborative International Dictionary of English
Machine work — Machine Ma*chine (m[.a]*sh[=e]n ), n. [F., fr. L. machina machine, engine, device, trick, Gr. ?, from ? means, expedient. Cf. {Mechanic}.] 1. In general, any combination of bodies so connected that their relative motions are constrained, and by… … The Collaborative International Dictionary of English