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1 mechanized mill
English-Russian big polytechnic dictionary > mechanized mill
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2 mechanized mill
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3 mechanized mill
Металлургия: механизированный стан -
4 mechanized mill
Англо-русский словарь по прокатке металлов > mechanized mill
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5 mechanized
1. a механизированный2. a воен. бронетанковыйmechanized attack — танковая атака, танковое наступление
Синонимический ряд:mechanical (adj.) automated; automatic; cybernetic; laborsaving; mechanical; motorized; self-acting; self-moving; self-propelling -
6 mill
прокатный стан || прокатывать□ setting the mill — настройка стана
- 1-2 mill- 1-2-3 mill
- 1-2-3-4 mill
- 2-Hi universal type slabbing mill
- aluminium-cold mill
- aluminium-foil mill
- aluminum sheet mill
- armor-plate rolling mill
- armour-plate rolling mill
- Assel mill
- automatic mill
- automatic card-programmed rolling mill
- automatic plug-rolling mill
- balanced mill
- ball-rolling mill
- bar mill
- bar and shape mill
- barrel type roll piercing mill
- bar-rolling mill
- beam mill
- becking mill
- Belgian mill
- Belgian looping mill
- Belgian rod mill
- Belgian wire mill
- big mill
- billet mill
- blooming mill
- blooming-slabbing mill
- brass rolling mill
- break-down mill
- broad strip mill
- broadside mill
- butt-weld pipe mill
- close continuous mill
- cluster mill
- cogging mill
- coil-skin pass mill
- coil-temper mill
- cold-reducing mill
- cold-reduction mill
- cold-rolling mill
- cold-strip mill
- combination mill
- combination blooming-billet mill
- cone-roll piercing mill
- continuous mill
- continuous billet mill
- continuous butt-weld mill
- continuous hot-strip mill
- continuous repeater mill
- continuous rod mill
- continuous seamless-tube rolling mill
- continuous sheet-bar and billet mill
- continuous wide-strip hot mill
- continuous wire mill
- contour rolling mill
- conventional mill
- corrugating rolling mill
- cotton mill
- cross-country mill
- cross-country billet mill
- cross-country rolling mill
- descaling mill
- die rolling mill
- Diescher mill
- direct rolling mill
- disk mill
- double Belgian mill
- double duo mill
- double-stand rolling mill
- double-strand mill
- drag-over mill
- duo mill
- edger mill
- electric-weld pipe mill
- electronically operated mill
- expanding mill
- ferrous rolling mill
- finishing mill
- fishplate mill
- five-stand tandem mill
- flaking mill
- flat rolling mill
- flatting mill
- flat wire mill
- foil mill
- forming mill
- four-high mill
- four-high combination rolling mill
- four-high continuous hot strip mill
- four-high driven mill
- four-high reversing cold mill
- four-high reversing cold strip mill
- four-high rolling mill
- four-high tandem cold mill
- four-stand tandem mill
- four-stand tandem cold strip mill
- four-strand mill
- Fretz-Moon pipe mill
- Garret mill
- Garret looping rod mill
- Grey mill
- guide mill
- hand mill
- hand sheet mill
- heavy merchant mill
- heavy section mill
- high-lift blooming mill
- high-lift slabbing mill
- high-speed mill
- hoop mill
- hot mill
- hot-aluminium mill
- hot-pack mill
- hot-rolling mill
- hot-strip mill
- induction weld mill
- jobbing mill
- jobbing sheet-rolling mill
- jump mill
- lap-welded mill
- Lauth mill
- light-section mill
- looping mill
- looping merchant mill
- low-speed mill
- main mill
- mandrel mill
- Mannesmann mill
- Mannesmann piercing mill
- mechanized mill
- medium section mill
- medium wide-strip mill
- merchant mill
- merchant-bar mill
- metal powder rolling mill
- Morgan mill
- multiroll mill
- multistrand mill
- multistrand cold-tube rolling mill
- non-continuous rolling mill
- non-ferrous rolling mill
- non-reversing mill
- non-reversing rolling mill
- open continuous mill
- overhang roll type mill
- pack mill
- pass-over mill
- piercing mill
- pilger mill
- pilger seamless-tube mill
- pilgrim mill
- pinch pass mill
- pipe mill
- pipe and tube mill
- planetary hot mill
- planishing mill
- plate mill
- plug mill
- pony-roughing mill
- present day mill
- primary mill
- Properzi continuous casting and rolling mill
- puddle mill
- pull-over mill
- Puppe mill
- push mill
- quarto mill
- rail mill
- rail-and-structural steel mill
- rail-finishing mill
- rail-rerolling mill
- rail-slitting mill
- railway-wheel mill
- railway-wheel-and-tyre mill
- reducing mill
- reducing sizing mill
- reduction mill
- reeling mill
- reinforcing bar mill
- repiercing mill
- resistance weld mill
- revamped mill
- reversing mill
- reversing blooming mill
- reversing cold mill
- ring-rolling mill
- ring type cold-strip mill
- rockright mill
- rod mill
- rod repeater mill
- Roeckner tube rolling mill
- Rohn mill
- rolling mill
- rotary-rolling mill
- roughing mill
- run-down mill
- seamless-tube rolling mill
- section mill
- semi-continuous mill
- semi-continuous hot-strip mill
- semi-continuous wire-rod mill
- Sendzimir mill
- seven-stand forming mill
- shape mill
- shaping mill
- sheared plate mill
- sheet mill
- sheet-bar mill
- sheet-bar-and-billet mill
- sheet-skin pass mill
- sheet-temper mill
- single stand mill
- single strand mill
- sinking mill
- sinking-sizing mill
- six-high cluster mill
- six-roller mill
- sizing mill
- skelp mill
- skin mill
- slabbing mill
- small section mill
- solid wheel rolling mill
- spiral weld-pipe mill
- Steckel mill
- Stiefel mill
- stiff mill
- straddle type mill
- straight-away mill
- stretch-reducing mill
- strip mill
- structural mill
- supplementary mill
- tandem mill
- tandem cold mill
- tandem sheet mill
- tandem tin-plate mill
- taper mill
- temper mill
- tension reducing mill
- three-high mill
- three-high blooming mill
- three-high cogging mill
- three-high jobbing mill
- three-high rolling mill
- three-high roughing mill
- three-high shape mill
- three-high universal mill
- three-stand mill
- three-strand rod mill
- tie-plate mill
- tin mill
- tin-plate mill
- tire mill
- trio mill
- tube mill
- tube-forming mill
- tube-reducing mill
- tube-rolling mill
- tube stretch reducing mill
- tubular mill
- twelve-high reversing cluster mill
- twenty-high reversing cluster mill
- twenty-high roll mill
- two-high mill
- two-high blooming mill
- two-high cogging mill
- two-high combination rolling mill
- two-high plate mill
- two-high pull-over mill
- two-high reversing mill
- two-high reversing-beam mill
- two-high reversing-blooming mill
- two-high reversing-finishing mill
- two-high reversing-plate mill
- two-high rolling mill
- two-high sheet-rolling mill
- two-high universal mill
- two-stand mill
- two-stand tandem mill
- two-strand mill
- tyre mill
- unidirectional mill
- universal mill
- universal beam mill
- universal reversing-roughing mill
- universal roughing mill
- universal slabbing mill
- universal structural mill
- versatile precision-rolling mill
- welding mill
- welding-and-forming mill
- wheel-rolling mill
- wheel-web-rolling mill
- wide-flange beam mill
- wide-strip mill
- wire mill
- wire flattening mill
- wire-rod mill
- Y-mill
- Yoder pipe-and-tube mill -
7 mechanized
механизировал; механизированный -
8 mechanized
механизировал; механизированный -
9 Cartwright, Revd Edmund
[br]b. 24 April 1743 Marnham, Nottingham, Englandd. 30 October 1823 Hastings, Sussex, England[br]English inventor of the power loom, a combing machine and machines for making ropes, bread and bricks as well as agricultural improvements.[br]Edmund Cartwright, the fourth son of William Cartwright, was educated at Wakefield Grammar School, and went to University College, Oxford, at the age of 14. By special act of convocation in 1764, he was elected Fellow of Magdalen College. He married Alice Whitaker in 1772 and soon after was given the ecclesiastical living of Brampton in Derbyshire. In 1779 he was presented with the living of Goadby, Marwood, Leicestershire, where he wrote poems, reviewed new works, and began agricultural experiments. A visit to Matlock in the summer of 1784 introduced him to the inventions of Richard Arkwright and he asked why weaving could not be mechanized in a similar manner to spinning. This began a remarkable career of inventions.Cartwright returned home and built a loom which required two strong men to operate it. This was the first attempt in England to develop a power loom. It had a vertical warp, the reed fell with the weight of at least half a hundredweight and, to quote Gartwright's own words, "the springs which threw the shuttle were strong enough to throw a Congreive [sic] rocket" (Strickland 19.71:8—for background to the "rocket" comparison, see Congreve, Sir William). Nevertheless, it had the same three basics of weaving that still remain today in modern power looms: shedding or dividing the warp; picking or projecting the shuttle with the weft; and beating that pick of weft into place with a reed. This loom he proudly patented in 1785, and then he went to look at hand looms and was surprised to see how simply they operated. Further improvements to his own loom, covered by two more patents in 1786 and 1787, produced a machine with the more conventional horizontal layout that showed promise; however, the Manchester merchants whom he visited were not interested. He patented more improvements in 1788 as a result of the experience gained in 1786 through establishing a factory at Doncaster with power looms worked by a bull that were the ancestors of modern ones. Twenty-four looms driven by steam-power were installed in Manchester in 1791, but the mill was burned down and no one repeated the experiment. The Doncaster mill was sold in 1793, Cartwright having lost £30,000, However, in 1809 Parliament voted him £10,000 because his looms were then coming into general use.In 1789 he began working on a wool-combing machine which he patented in 1790, with further improvements in 1792. This seems to have been the earliest instance of mechanized combing. It used a circular revolving comb from which the long fibres or "top" were. carried off into a can, and a smaller cylinder-comb for teasing out short fibres or "noils", which were taken off by hand. Its output equalled that of twenty hand combers, but it was only relatively successful. It was employed in various Leicestershire and Yorkshire mills, but infringements were frequent and costly to resist. The patent was prolonged for fourteen years after 1801, but even then Cartwright did not make any profit. His 1792 patent also included a machine to make ropes with the outstanding and basic invention of the "cordelier" which he communicated to his friends, including Robert Fulton, but again it brought little financial benefit. As a result of these problems and the lack of remuneration for his inventions, Cartwright moved to London in 1796 and for a time lived in a house built with geometrical bricks of his own design.Other inventions followed fast, including a tread-wheel for cranes, metallic packing for pistons in steam-engines, and bread-making and brick-making machines, to mention but a few. He had already returned to agricultural improvements and he put forward suggestions in 1793 for a reaping machine. In 1801 he received a prize from the Board of Agriculture for an essay on husbandry, which was followed in 1803 by a silver medal for the invention of a three-furrow plough and in 1805 by a gold medal for his essay on manures. From 1801 to 1807 he ran an experimental farm on the Duke of Bedford's estates at Woburn.From 1786 until his death he was a prebendary of Lincoln. In about 1810 he bought a small farm at Hollanden near Sevenoaks, Kent, where he continued his inventions, both agricultural and general. Inventing to the last, he died at Hastings and was buried in Battle church.[br]Principal Honours and DistinctionsBoard of Agriculture Prize 1801 (for an essay on agriculture). Society of Arts, Silver Medal 1803 (for his three-furrow plough); Gold Medal 1805 (for an essay on agricultural improvements).Bibliography1785. British patent no. 1,270 (power loom).1786. British patent no. 1,565 (improved power loom). 1787. British patent no. 1,616 (improved power loom).1788. British patent no. 1,676 (improved power loom). 1790, British patent no. 1,747 (wool-combing machine).1790, British patent no. 1,787 (wool-combing machine).1792, British patent no. 1,876 (improved wool-combing machine and rope-making machine with cordelier).Further ReadingM.Strickland, 1843, A Memoir of the Life, Writings and Mechanical Inventions of Edmund Cartwright, D.D., F.R.S., London (remains the fullest biography of Cartwright).Dictionary of National Biography (a good summary of Cartwright's life). For discussions of Cartwright's weaving inventions, see: A.Barlow, 1878, The History and Principles of Weaving by Hand and by Power, London; R.L. Hills, 1970, Power in the Industrial Revolution, Manchester. F.Nasmith, 1925–6, "Fathers of machine cotton manufacture", Transactions of theNewcomen Society 6.H.W.Dickinson, 1942–3, "A condensed history of rope-making", Transactions of the Newcomen Society 23.W.English, 1969, The Textile Industry, London (covers both his power loom and his wool -combing machine).RLHBiographical history of technology > Cartwright, Revd Edmund
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10 Arkwright, Sir Richard
SUBJECT AREA: Textiles[br]b. 23 December 1732 Preston, Englandd. 3 August 1792 Cromford, England[br]English inventor of a machine for spinning cotton.[br]Arkwright was the youngest of thirteen children and was apprenticed to a barber; when he was about 18, he followed this trade in Bol ton. In 1755 he married Patients Holt, who bore him a son before she died, and he remarried in 1761, to Margaret Biggins. He prospered until he took a public house as well as his barber shop and began to lose money. After this failure, he travelled around buying women's hair for wigs.In the late 1760s he began spinning experiments at Preston. It is not clear how much Arkwright copied earlier inventions or was helped by Thomas Highs and John Kay but in 1768 he left Preston for Nottingham, where, with John Smalley and David Thornley as partners, he took out his first patent. They set up a mill worked by a horse where machine-spun yarn was produced successfully. The essential part of this process lay in drawing out the cotton by rollers before it was twisted by a flyer and wound onto the bobbin. The partners' resources were not sufficient for developing their patent so Arkwright found new partners in Samuel Need and Jedediah Strutt, hosiers of Nottingham and Derby. Much experiment was necessary before they produced satisfactory yarn, and in 1771 a water-driven mill was built at Cromford, where the spinning process was perfected (hence the name "waterframe" was given to his spinning machine); some of this first yarn was used in the hosiery trade. Sales of all-cotton cloth were initially limited because of the high tax on calicoes, but the tax was lowered in 1774 by Act of Parliament, marking the beginning of the phenomenal growth of the cotton industry. In the evidence for this Act, Arkwright claimed that he had spent £12,000 on his machine. Once Arkwright had solved the problem of mechanical spinning, a bottleneck in the preliminary stages would have formed but for another patent taken out in 1775. This covered all preparatory processing, including some ideas not invented by Arkwright, with the result that it was disputed in 1783 and finally annulled in 1785. It contained the "crank and comb" for removing the cotton web off carding engines which was developed at Cromford and solved the difficulty in carding. By this patent, Arkwright had mechanized all the preparatory and spinning processes, and he began to establish water-powered cotton mills even as far away as Scotland. His success encouraged many others to copy him, so he had great difficulty in enforcing his patent Need died in 1781 and the partnership with Strutt ended soon after. Arkwright became very rich and financed other spinning ventures beyond his immediate control, such as that with Samuel Oldknow. It was estimated that 30,000 people were employed in 1785 in establishments using Arkwright's patents. In 1786 he received a knighthood for delivering an address of thanks when an attempt to assassinate George III failed, and the following year he became High Sheriff of Derbyshire. He purchased the manor of Cromford, where he died in 1792.[br]Principal Honours and DistinctionsKnighted 1786.Bibliography1769, British patent no. 931.1775, British patent no. 1,111.Further ReadingR.S.Fitton, 1989, The Arkwrights, Spinners of Fortune, Manchester (a thorough scholarly work which is likely to remain unchallenged for many years).R.L.Hills, 1973, Richard Arkwright and Cotton Spinning, London (written for use in schools and concentrates on Arkwright's technical achievements).R.S.Fitton and A.P.Wadsworth, 1958, The Strutts and the Arkwrights, Manchester (concentrates on the work of Arkwright and Strutt).A.P.Wadsworth and J.de L.Mann, 1931, The Cotton Trade and Industrial Lancashire, Manchester (covers the period leading up to the Industrial Revolution).F.Nasmith, 1932, "Richard Arkwright", Transactions of the Newcomen Society 13 (looks at the actual spinning invention).R.L.Hills, 1970, Power in the Industrial Revolution, Manchester (discusses the technical problems of Arkwright's invention).RLH -
11 operation
1) работа; функционирование2) матем. действие3) эксплуатация4) (технологическая) операция; процесс; цикл ( обработки)6) управление7) вчт. операция; команда8) предприятие•-
abnormal operation
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acquisition operation
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aerial operation
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aerial survey operation
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aerial work operation
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aerobatics operation
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aerospace operations
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air-bumped-and-rinse operation
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aircraft operations
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air-lift well operation
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airport facilities operation
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alignment operation
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all-weather operations
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AND operation
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approach operation
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arithmetic operation
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artificial-lift well operation
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associated fire control operation
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asynchronous operation
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attached operation
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attempted operation
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attended operation
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authorized operation
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automated operation
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automatic block operation
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averaging operation
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background operation
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batch operation
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bidirectional operation
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bilevel operation
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binary operation
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bistable operation
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bitwise operation
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bit operation
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blanking operation
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blasting operation
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blocking-off operation
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bookkeeping operations
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Boolean operation
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both-way operation
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brake test operation
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braking operation
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branch operation
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breaking operation
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bytewise operation
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byte operation
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cable operation
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Carnot operation
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carrier-recovery operation
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cation-anion operation
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caving operations
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cavitation-free operation
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centralized operation
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channel operation
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check operation
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chipping-and-hauling operation
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class A operation
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class B operation
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class C operation
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climb to cruise operation
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closing operation
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CNC operation
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cocurrent operation
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coded operation
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co-frequency operation
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cold end operation
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commercial operation
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comparison operation
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complete operation
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concurrent operation
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conjunction operation
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continual harvesting operations
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continuous operation
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continuous-wave operation
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control operation
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counter-current operation
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critical operation
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cutting operation
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cycle operation
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declarative operation
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decrement operation
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demonstration operation
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dependent manual operation
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dependent power operation
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diplex operation
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disjunction operation
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diversity operation
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docked operation
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docking operations
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domestic operations
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double-track operation
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dredging operations
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dressing operation
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drifting operation
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drilling and blasting operations
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drilling operation
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dual operation
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dual-point operation
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duplex operation
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dyadic operation
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emergency operation
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engine run-up operation
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en-route operation
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except operation
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exclusive OR operation
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experimental operation
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explosionproof operation
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face operations
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fail-safe operation
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fail-soft operation
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failure-free operation
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false operation
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fault tolerant operation
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faulty operation
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felling operation
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ferry operation
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field operation
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final felling operations
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finite reflux operation
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fire control operation
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fixed-cycle operation
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fixed-point operation
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flashing operation
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floating-point operation
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flowing well operation
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foreground operation
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forest harvesting operations
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free-flier operation
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free-flying operation
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freight operation
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fretting operation
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fringe operation
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full tree operations
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full-duplex operation
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gas-lift well operation
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gate operation
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general aviation operations
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generic operation
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get-home engine operation
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half-duplex operation
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hands-off operation
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harvesting operations
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hauling operation
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helicopter logging operation
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high-gain operation
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high-speed operation
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hot end operation
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hot-stick operation
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housekeeping operation
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hydropacker plunger lift well operation
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idling engine operation
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IF-THEN operation
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illegal operation
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impeded harmonic operation
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implication operation
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in-channel operation
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increment operation
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independent manual operation
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individual-point operation
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indoor operation
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infinite reflux operation
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in-phase operation
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input/output operation
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instruction operation
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instrument flight rules operation
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integer operation
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international operations
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iterative operation
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jump operation
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kernel operation
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kiln operation
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lagging power factor operation
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landing operation
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large-scale space operations
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large-signal operation
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leading power factor operation
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leveling operation
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level-off operation
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linear operation
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lock-on operation
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logging operations
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logical operation
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loop operation
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low flying operation
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low-effort operation
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low-gain operation
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lumbering operation
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machine operation
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machining operation
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maintenance operation
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manual operation
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marginal operation
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measuring operation
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mechanical operation
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mechanized logging operations
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melting operation
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mill operation
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minimally-manned operation
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minimal operation
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model operation
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monadic operation
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monostable operation
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move operation
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multicarrier operation
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multimode operation
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multiple operation
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multiple-stream operation
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multiple-unit operation
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multiplex operation
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NAND operation
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no operation
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no-load operation
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noncentralized operation
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noncommercial operations
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noncondensing operation
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nonextraction operation
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nonfailure operation
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nonresiduum operation
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nonscheduled operations
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nonslagging operation
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NOR operation
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normal pump operation
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NOT operation
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NOT-AND operation
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NOT-OR operation
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off-design operation
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off-line operation
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one-shot operation
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one-step operation
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on-line operation
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on-off operation
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open-air operation
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open-hearth operation
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opening operation
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OR operation
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outdoor operation
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overburden operations
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packet-mode operation
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packet-switching operation
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parallel operation
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partial reflux operation
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passenger operations
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peak load operation
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pleasure operation
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point operation
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point-to-point operation
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positioning operation
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post-drill operation
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post-fault operation
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power patrol operation
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power station operation
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power system operation
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practice operation
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predrill operation
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primitive operation
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products pipeline operation
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pull-in operation
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pulse laser operation
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pulsed operation
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punched tape operation
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push-pull operation
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push-push operation
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quadrature operation
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quantizing operation
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quarry operation
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rafting operation
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read operation
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real-time operation
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refusing operation
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remote operation
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rendezvous operations
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repetitive operation
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rescue operations
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reservoir operation
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retarder operation
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rotorcraft operations
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rough engine operation
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run-of-river operation
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scale operation
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scheduled operation
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search operation
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self-contained and self-monitored operation
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semifinish operation
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sensory operation
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settling operation
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shift operation
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shunting operation
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signal operation
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simplex operation
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simultaneous operation
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single-block operation
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single-contact operation
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single-mode operation
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single-pulse operation
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single-step operation
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sinking operation
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slag-free operation
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slag-tap operation
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slightly manned operation
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small-signal operation
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solo supervised operation
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solo operation
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speed range operation
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spike operation
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stable operation
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staggered-parallel operation
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standby operation
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starting engine operation
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start-stop operation
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staying operation
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steady operation
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steaming operation
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steelmaking operation
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step-and-repeat operation
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step-by-step operation
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stitch transfer operation
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stone-free operation
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storage operation
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straight gas-lift well operation
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string operation
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studio operation
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stump wood operation
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suppressed-carrier operation
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switch operation
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switching operation
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synchronous operation
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tap-change operation
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taxing operation
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terminal operation
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test operation
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thinning operations
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threading operation
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throttled engine operation
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timber-harvesting operations
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total reflux operation
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touchdown operation
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track-while-scan operation
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training operation
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transfer operation
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transient operation
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tree length operations
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trial operation
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trouble-free operation
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turbine operation
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two-shift operation
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two-vessel operation
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typical operation
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unary operation
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unattended operation
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unauthorized operation
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underground operation
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undocked operation
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undocking operations
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uninterrupted operation
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unmanned operation
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unthrottled engine operation
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variable-load operation
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vertical rotorcraft operation
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water-system operation
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well operation
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whole tree operations
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wide-open throttle operation
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word operation
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working operation
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write operation
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yard operation
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year-round operations -
12 yard
1) склад открытого хранения; площадка для хранения2) ж.-д. станционный парк3) мор. верфь4) мор. рей5) ярд ( единица длины)•-
advance yard
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bedding yard
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boatbuilding yard
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break-up yard
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brick yard
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building yard
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casting yard
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charge materials yard
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cinder yard
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classification yard
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coach yard
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coal-storage yard
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cold storage yard
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conditioning yard
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container yard
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curing yard
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departure yard
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doubling yard
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dressing yard
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erecting yard
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flame-cutting yard
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flat yard
-
freight yard
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front yard
-
goods yard
-
gravity yard
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hold yard
-
hump yard
-
ingot yard
-
inspecting yard
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junk yard
-
ladle yard
-
lime yard
-
lumber yard
-
marshaling yard
-
mechanized marshaling yard
-
mill yard
-
mold preparation yard
-
mold yard
-
mold-coating yard
-
oil yard
-
ore stock yard
-
ore yard
-
outfitting yard
-
passenger yard
-
pig storage yard
-
pipe yard
-
rear yard
-
receiving yard
-
receiving-departure yard
-
repair yard
-
retarder classification yard
-
scarfing yard
-
scrap yard
-
separating yard
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service yard
-
shipbuilding yard
-
shipping yard
-
shunting yard
-
slab conditioning yard
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slab yard
-
slag yard
-
sorting yard
-
storage yard
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stripper yard
-
tandem yard
-
timber yard
-
transformer yard
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wood yard
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