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1 светофильтр спецэффектов
Русско-английский политехнический словарь > светофильтр спецэффектов
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2 светофильтр для спецэффектов
Engineering: effects filterУниверсальный русско-английский словарь > светофильтр для спецэффектов
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3 светофильтр спецэффектов
Engineering: effects filterУниверсальный русско-английский словарь > светофильтр спецэффектов
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4 фильтр освещение
Information technology: lighting effects filter -
5 фильтр эффектов
Information technology: effects filter -
6 dique
m.1 dike.2 dock (in port).dique seco dry dock* * *1 (muro) dike, breakwater2 figurado barrier, obstacle, check\dique seco dry dock* * *noun m.* * *SM1) (=muro de contención) [en río] dyke, dike ( esp EEUU); [en puerto] dockentrar en dique, hacer dique — to dock
2) (=rompeolas) breakwater3) (=impedimento)poner un dique a algo — to check sth, restrain sth
* * *masculino dike** * *= dam, levee, seawall, embankment, dike [dyke].Ex. The article 'Poland: the dam breaks' outlines the history of severe censorship restrictions in Poland = El artículo "Polonia: la presa revienta" describe en líneas generales la historia de las fuertes restricciones de la censura en Polonia.Ex. The author considers whether the librarian should be a filter, providing only those materials considered appropriate, or a levee holding back the floodwaters of publications and proliferating information.Ex. A violent storm breached the seawall caused widespread flooding of the area including the library.Ex. Side-effects on the environment include beaches losing sand because of seafront embankments, littoral dunes deteriorating and marinas becoming silted.Ex. The article is entitled 'Holes in the dike: is Cambridge Scientific publisher losing water?.----* construcción de diques = diking [dyking].* construir un dique = dike [dyke].* dejar en el dique seco = mothball.* dique seco = dry dock.* en el dique seco = in dry dock, in the wilderness.* * *masculino dike** * *= dam, levee, seawall, embankment, dike [dyke].Ex: The article 'Poland: the dam breaks' outlines the history of severe censorship restrictions in Poland = El artículo "Polonia: la presa revienta" describe en líneas generales la historia de las fuertes restricciones de la censura en Polonia.
Ex: The author considers whether the librarian should be a filter, providing only those materials considered appropriate, or a levee holding back the floodwaters of publications and proliferating information.Ex: A violent storm breached the seawall caused widespread flooding of the area including the library.Ex: Side-effects on the environment include beaches losing sand because of seafront embankments, littoral dunes deteriorating and marinas becoming silted.Ex: The article is entitled 'Holes in the dike: is Cambridge Scientific publisher losing water?.* construcción de diques = diking [dyking].* construir un dique = dike [dyke].* dejar en el dique seco = mothball.* dique seco = dry dock.* en el dique seco = in dry dock, in the wilderness.* * *dike*Compuestos:dam, dike*floating dockdry dock* * *
dique sustantivo masculino
dike( conjugate dike)
dique sustantivo masculino dike
♦ Locuciones: dique seco, dry dock
' dique' also found in these entries:
Spanish:
presa
- represa
English:
dam
- dyke
- embankment
- floodgate
- dike
- dry
* * *dique nm1. [en río] dykedique de contención dam2. [en puerto] dockdique flotante floating dock;dique seco dry dock;estar en el dique seco [persona] to be out of action3. Geol dyke4. CompRP Famdarse dique to show off* * *m dike, Brdyke* * *dique nm: dike* * *dique n dam -
7 включён
•After this, power can be switched (or turned) on.
•The two knife switches were thrown in simultaneously.
•II•These effects are built into the wave vector equation.
•A full-flow filter is now incorporated in the hydraulic system.
Русско-английский научно-технический словарь переводчика > включён
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8 включён
•After this, power can be switched (or turned) on.
•The two knife switches were thrown in simultaneously.
•II•These effects are built into the wave vector equation.
•A full-flow filter is now incorporated in the hydraulic system.
Русско-английский научно-технический словарь переводчика > включён
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9 световой
прил.световая реклама — illuminated signs мн. ч.
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10 цифровой
1. numeric2. numeralцифровая система; система счисления — numeral system
3. all digital4. all-digital5. digicom6. digit7. digitalцифровой датчик времени; цифровые часы — digital time unit
8. digitized9. numericalчисловой код; цифровой код — numeric code
цифровая клавиатура с "" — shifted numeric keypad
цифровой дисплей; цифровое табло — numeric display
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11 Fibreglas
Fibreglas textile fibres are produced by two methods, the continuous filament process and staple fibre process. In each process glass marbles, made from melted and refined raw materials are remelted in small electrical furnaces, each of which has many small holes in the base of the melting chamber, through which the molten glass flows in fine streams by gravity. In the continuous filament process more than 100 filaments are drawn simultaneously and gathered into a thread or strand. The strand is attached to a high-speed winder that, as it draws the strand, attentuates each stream of molten glass to a fraction of the diameter of the hole through which it emerges. In the staple fibre process the streams of molten glass are struck by jets of high-pressure air or steam which attentuate the glass into fibres varying in length from 8-in. to 15-in. These fibres are driven on to a revolving drum on which they form a web, which is gathered from the drum and wound on to a tube in the form of a sliver. Strands of either continuous filament or staple fibres are twisted and plied into yarns on standard textile machinery. Fibreglas yarns are particularly suitable where fire-proofness, resistance to acids or other chemicals other than alkalis is demanded. Uses include electrical yarns, cords, tapes, cloths and sleevings which form the basis for a plain and varnished or impregnated electrical insulation material; chemical filter fabrics, anode bags used in electroplating, wicking for oil lamps and stoves, pump diaphragms, special fabrics for resisting high-temperature fumes and acids, facing materials for insulating or acoustical blankets, also rubber-coated, acid-proof and waterproof fabrics. Decorative uses include draperies, shower curtains, tablecloths, bedspreads, lamp shades and some apparel accessories, such as men's neckties. Also decorative work in architecture, dress fabrics, particularly for fancy effects, non-stretching cord for use in radio indicating dials, bookbinding, fire-screens, etc. -
12 Bunsen, Robert Wilhelm
SUBJECT AREA: Chemical technology[br]b. 31 March 1811 Göttingen, Germanyd. 16 August 1899 Heidelberg, Germany[br]German chemist, pioneer of chemical spectroscopy.[br]Bunsen's father was Librarian and Professor of Linguistics at Göttingen University and Bunsen himself studied chemistry there. Obtaining his doctorate at the age of only 19, he travelled widely, meeting some of the leading chemists of the day and visiting many engineering works. On his return he held various academic posts, finally as Professor of Chemistry at Heidelberg in 1852, a post he held until his retirement in 1889.During 1837–41 Bunsen studied a series of compounds shown to contain the cacodyl (CH3)2As-group or radical. The elucidation of the structure of these compounds gave support to the radical theory in organic chemistry and earned him fame, but it also cost him the sight of an eye and other ill effects resulting from these dangerous and evil-smelling substances. With the chemist Gustav Robert Kirchhoff (1824–87), Bunsen pioneered the use of spectroscopy in chemical analysis from 1859, and with its aid he discovered the elements caesium and rubidium. He developed the Bunsen cell, a zinc-carbon primary cell, with which he isolated a number of alkali and other metals by electrodeposition from solution or electrolysis of fused chlorides.Bunsen's main work was in chemical analysis, in the course of which he devised some important laboratory equipment, such as a filter pump. The celebrated Bunsen gas burner was probably devised by his technician Peter Desdega. During 1838–44 Bunsen applied his methods of gas analysis to the study of the gases produced by blast furnaces for the production of cast iron. He demonstrated that no less than 80 per cent of the heat was lost during smelting, and that valuable gaseous by-products, such as ammonia, were also lost. Lyon Playfair in England was working along similar lines, and in 1848 the two men issued a paper, "On the gases evolved from iron furnaces", to draw attention to these drawbacks.[br]Bibliography1904, Bunsen's collected papers were published in 3 vols, Leipzig.Further ReadingG.Lockemann, 1949, Robert Wilhelm Bunsen: Lebensbild eines deutschen Forschers, Stuttgart.T.Curtin, 1961, biog. account, in E.Farber (ed.), Great Chemists, New York, pp. 575–81. Henry E.Roscoe, 1900, "Bunsen memorial lecture, 29th March 1900", Journal of theChemical Society 77:511–54.LRD
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