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(not+completed)

  • 1 Intercept will be completed using stern geometry

    Aviation: stern only (A conversion to a "CUTOFF" will not be attempted)

    Универсальный русско-английский словарь > Intercept will be completed using stern geometry

  • 2 завершенный

    Бизнес, юриспруденция. Русско-английский словарь > завершенный

  • 3 Bateman, John Frederick La Trobe

    [br]
    b. 30 May 1810 Lower Wyke, near Halifax, Yorkshire, England
    d. 10 June 1889 Moor Park, Farnham, Surrey, England
    [br]
    English civil engineer whose principal works were concerned with reservoirs, water-supply schemes and pipelines.
    [br]
    Bateman's maternal grandfather was a Moravian missionary, and from the age of 7 he was educated at the Moravian schools at Fairfield and Ockbrook. At the age of 15 he was apprenticed to a "civil engineer, land surveyor and agent" in Oldham. After this apprenticeship, Bateman commenced his own practice in 1833. One of his early schemes and reports was in regard to the flooding of the river Medlock in the Manchester area. He came to the attention of William Fairbairn, the engine builder and millwright of Canal Street, Ancoats, Manchester. Fairbairn used Bateman as his site surveyor and as such he prepared much of the groundwork for the Bann reservoirs in Northern Ireland. Whilst the reports on the proposals were in the name of Fairbairn, Bateman was, in fact, appointed by the company as their engineer for the execution of the works. One scheme of Bateman's which was carried forward was the Kendal Reservoirs. The Act for these was signed in 1845 and was implemented not for the purpose of water supply but for the conservation of water to supply power to the many mills which stood on the river Kent between Kentmere and Morecambe Bay. The Kentmere Head dam is the only one of the five proposed for the scheme to survive, although not all the others were built as they would have retained only small volumes of water.
    Perhaps the greatest monument to the work of J.F.La Trobe Bateman is Manchester's water supply; he was consulted about this in 1844, and construction began four years later. He first built reservoirs in the Longdendale valley, which has a very complicated geological stratification. Bateman favoured earth embankment dams and gravity feed rather than pumping; the five reservoirs in the valley that impound the river Etherow were complex, cored earth dams. However, when completed they were greatly at risk from landslips and ground movement. Later dams were inserted by Bateman to prevent water loss should the older dams fail. The scheme was not completed until 1877, by which time Manchester's population had exceeded the capacity of the original scheme; Thirlmere in Cumbria was chosen by Manchester Corporation as the site of the first of the Lake District water-supply schemes. Bateman, as Consulting Engineer, designed the great stone-faced dam at the west end of the lake, the "gothic" straining well in the middle of the east shore of the lake, and the 100-mile (160 km) pipeline to Manchester. The Act for the Thirlmere reservoir was signed in 1879 and, whilst Bateman continued as Consulting Engineer, the work was supervised by G.H. Hill and was completed in 1894.
    Bateman was also consulted by the authorities in Glasgow, with the result that he constructed an impressive water-supply scheme derived from Loch Katrine during the years 1856–60. It was claimed that the scheme bore comparison with "the most extensive aqueducts in the world, not excluding those of ancient Rome". Bateman went on to superintend the waterworks of many cities, mainly in the north of England but also in Dublin and Belfast. In 1865 he published a pamphlet, On the Supply of Water to London from the Sources of the River Severn, based on a survey funded from his own pocket; a Royal Commission examined various schemes but favoured Bateman's.
    Bateman was also responsible for harbour and dock works, notably on the rivers Clyde and Shannon, and also for a number of important water-supply works on the Continent of Europe and beyond. Dams and the associated reservoirs were the principal work of J.F.La Trobe Bateman; he completed forty-three such schemes during his professional career. He also prepared many studies of water-supply schemes, and appeared as professional witness before the appropriate Parliamentary Committees.
    [br]
    Principal Honours and Distinctions
    FRS 1860. President, Institution of Civil Engineers 1878, 1879.
    Bibliography
    Among his publications History and Description of the Manchester Waterworks, (1884, London), and The Present State of Our Knowledge on the Supply of Water to Towns, (1855, London: British Association for the Advancement of Science) are notable.
    Further Reading
    Obituary, 1889, Proceedings of the Royal Society 46:xlii-xlviii. G.M.Binnie, 1981, Early Victorian Water Engineers, London.
    P.N.Wilson, 1973, "Kendal reservoirs", Transactions of the Cumberland and Westmorland Antiquarian and Archaeological Society 73.
    KM / LRD

    Biographical history of technology > Bateman, John Frederick La Trobe

  • 4 недоправен

    unfinished, incomplete, not completed/finished
    * * *
    недопра̀вен,
    прил. unfinished, incomplete, not completed/finished.
    * * *
    unfinished, incomplete, not completed/finished

    Български-английски речник > недоправен

  • 5 Clark, Edwin

    SUBJECT AREA: Civil engineering
    [br]
    b. 7 January 1814 Marlow, Buckinghamshire, England
    d. 22 October 1894 Marlow, Buckinghamshire, England
    [br]
    English civil engineer.
    [br]
    After a basic education in mathematics, latin, French and geometry, Clark was articled to a solicitor, but he left after two years because he did not like the work. He had no permanent training otherwise, and for four years he led an idle life, becoming self-taught in the subjects that interested him. He eventually became a teacher at his old school before entering Cambridge, although he returned home after two years without taking a degree. He then toured the European continent extensively, supporting himself as best he could. He returned to England in 1839 and obtained further teaching posts. With the railway boom in progress he decided to become a surveyor and did some work on a proposed line between Oxford and Brighton.
    After being promised an interview with Robert Stephenson, he managed to see him in March 1846. Stephenson took a liking to Clark and asked him to investigate the strains on the Britannia Bridge tubes under various given conditions. This work so gained Stephenson's full approval that, after being entrusted with experiments and designs, Clark was appointed Resident Engineer for the Britannia Bridge across the Menai Straits. He not only completed the bridge, which was opened on 19 October 1850, but also wrote the history of its construction. After the completion of the bridge—and again without any professional experience—he was appointed Engineer-in-Chief to the Electric and International Telegraph Company. He was consulted by Captain Mark Huish of the London \& North Western Railway on a telegraphic system for the railway, and in 1853 he introduced the Block Telegraph System.
    Clark was engaged on the Crystal Palace and was responsible for many railway bridges in Britain and abroad. He was Engineer and part constructor of the harbour at Callao, Peru, and also of harbour works at Colón, Panama. On canal works he was contractor for the marine canal, the Morskoy Canal, in 1875 between Kronstadt and St Petersburg. His great work on canals, however, was the concept with Edward Leader Williams of the hydraulically operated barge lift at Anderton, Cheshire, linking the Weaver Navigation to the Trent \& Mersey Canal, whose water levels have a vertical separation of 50 ft (15 m). This was opened on 26 July 1875. The structure so impressed the French engineers who were faced with a bottleneck of five locks on the Neuffossée Canal south of Saint-Omer that they commissioned Clark to design a lift there. This was completed in 1878 and survives as a historic monument. The design was also adopted for four lifts on the Canal du Centre at La Louvière in Belgium, but these were not completed until after Clark's death.
    JHB

    Biographical history of technology > Clark, Edwin

  • 6 схема захода на посадку по приборам

    схема захода на посадку по приборам; IAP
    Серия заранее намеченных манёвров, выполняемых по пилотажным приборам, при соблюдении установленных требований, предусматривающих предотвращение столкновения с препятствиями, от контрольной точки начального захода на посадку или, в соответствующих случаях, от начала установленного маршрута прибытия до точки, откуда может быть выполнена посадка, а если посадка не выполнена, то до точки, от которой применяются критерии пролёта препятствий в зоне ожидания или на маршруте. Схемы захода на посадку по приборам классифицируются следующим образом:
    Схема неточного захода на посадку (NPA). Схема захода на посадку по приборам с использованием бокового наведения, но без использования вертикального наведения.
    Схема захода на посадку с вертикальным наведением (APV). Схема захода на посадку по приборам с использованием бокового и вертикального наведения, но не отвечающая требованиям, установленным для точных заходов на посадку и посадок.
    Схема точного захода на посадку (РА). Схема захода на посадку по приборам с использованием точного бокового и вертикального наведения при минимумах, определяемых категорией захода на посадку.
    Примечание. Боковое и вертикальное наведение представляет собой наведение, обеспечиваемое с помощью либо:
    a) наземного навигационного средства, либо
    b) выдаваемой компьютером базы навигационных данных.
    instrument approach procedure; IAP
    A series of predetermined manoeuvres by reference to flight instruments with specified protection from obstacles from the initial approach fix, or where applicable, from the beginning of a defined arrival route to a point from which a landing can be completed and thereafter, if a landing is not completed, to a position at which holding or en-route obstacle clearance criteria apply. Instrument approach procedures are classified as follows:
    Non-precision approach (NPA) procedure. An instrument approach procedure which utilizes lateral guidance but does not utilize vertical guidance.
    Approach procedure with vertical guidance (APV). An instrument procedure which utilizes lateral and vertical guidance but does not meet the requirements established for precision approach and landing operations.
    Precision approach (PA) procedure. An instrument approach procedure using precision lateral and vertical guidance with minima as determined by the category of operation.
    Note.— Lateral and vertical guidance refers to the guidance provided either by:
    a) a ground-based navigation aid; or
    b) computer-generated navigation data.
    (AN 2; AN 4; PANS-OPS/I; PANS-OPS/II)
    Official definition modified by Amdt 13 (25/11/2004) to PANS-OPS/I.

    Русско-английский словарь международной организации гражданской авиации > схема захода на посадку по приборам

  • 7 IAP

    схема захода на посадку по приборам; IAP
    Серия заранее намеченных манёвров, выполняемых по пилотажным приборам, при соблюдении установленных требований, предусматривающих предотвращение столкновения с препятствиями, от контрольной точки начального захода на посадку или, в соответствующих случаях, от начала установленного маршрута прибытия до точки, откуда может быть выполнена посадка, а если посадка не выполнена, то до точки, от которой применяются критерии пролёта препятствий в зоне ожидания или на маршруте. Схемы захода на посадку по приборам классифицируются следующим образом:
    Схема неточного захода на посадку (NPA). Схема захода на посадку по приборам с использованием бокового наведения, но без использования вертикального наведения.
    Схема захода на посадку с вертикальным наведением (APV). Схема захода на посадку по приборам с использованием бокового и вертикального наведения, но не отвечающая требованиям, установленным для точных заходов на посадку и посадок.
    Схема точного захода на посадку (РА). Схема захода на посадку по приборам с использованием точного бокового и вертикального наведения при минимумах, определяемых категорией захода на посадку.
    Примечание. Боковое и вертикальное наведение представляет собой наведение, обеспечиваемое с помощью либо:
    a) наземного навигационного средства, либо
    b) выдаваемой компьютером базы навигационных данных.
    instrument approach procedure; IAP
    A series of predetermined manoeuvres by reference to flight instruments with specified protection from obstacles from the initial approach fix, or where applicable, from the beginning of a defined arrival route to a point from which a landing can be completed and thereafter, if a landing is not completed, to a position at which holding or en-route obstacle clearance criteria apply. Instrument approach procedures are classified as follows:
    Non-precision approach (NPA) procedure. An instrument approach procedure which utilizes lateral guidance but does not utilize vertical guidance.
    Approach procedure with vertical guidance (APV). An instrument procedure which utilizes lateral and vertical guidance but does not meet the requirements established for precision approach and landing operations.
    Precision approach (PA) procedure. An instrument approach procedure using precision lateral and vertical guidance with minima as determined by the category of operation.
    Note.— Lateral and vertical guidance refers to the guidance provided either by:
    a) a ground-based navigation aid; or
    b) computer-generated navigation data.
    (AN 2; AN 4; PANS-OPS/I; PANS-OPS/II)
    Official definition modified by Amdt 13 (25/11/2004) to PANS-OPS/I.

    Русско-английский словарь международной организации гражданской авиации > IAP

  • 8 завершенный

    1. complete
    2. completed
    Синонимический ряд:
    1. конченный (прил.) довершенный; довести до конца; доконченный; законченный; конченный; оконченный; подвести черту; поставить точку
    2. увенчанный (прил.) увенчанный

    Русско-английский большой базовый словарь > завершенный

  • 9 копирование не завершено

    Универсальный русско-английский словарь > копирование не завершено

  • 10 fuoricorso

    1 (fin.) ( di banconote) no longer current, no longer in circulation
    2 ( di studente) who has not completed his exams (within the legally required time)
    s.m. e f. student who has not completed his exams (within the legally required time).

    Dizionario Italiano-Inglese > fuoricorso

  • 11 Mafra, Palace and Convent of

       One of the Iberian Peninsula's largest structures, Mafra Palace and Convent remains Portugal's most colossal historic monument-building. About 48 kilometers (30 miles) north-northwest of Lisbon, the complex is located in the town of Mafra, one of Portugal's most ancient settlements. First ordered built by the extravagant King João V in 1711, Mafra Palace was not completed until decades later by poorly paid labor. With perhaps the larger building of Phillip II of Spain's Escorial Palace and Convent in mind, King João V dedicated the rival enterprise to celebrating the birth of a child to his Austrian queen; this child, who was a girl, became queen of Spain. A veritable army of workers — at one time 45,000—constructed the massive building, which some thought would never be completed. In fact, after it was finally begun in 1717, the building was finished in 1735.
       The most extravagant project of João's expansive reign, Mafra Palace and Convent are heavy in style and spirit, but this is offset by the magnificent baroque library and the music that comes from the 50-bell carillon that is still in use. The wonders of Mafra can be imagined from just a few of the building figures; there are, for example, 5,200 doorways and 2,500 windows. Some of the wealth in royal coffers that paid for Mafra came from "the King's Fifth," out of the diamonds and gold in Portugal's richest colony, Brazil. The manner in which this historic monument is utilized not only as a tourist site, but also for a variety of other purposes, is a fascinating case of Portugal as a "museum-state." Mafra today provides space for two museums, offices of the Mafra City Hall (Câmara Municipal), an elementary school, and an army regiment. It is also used as a church.

    Historical dictionary of Portugal > Mafra, Palace and Convent of

  • 12 копирование не завершено

    Русско-английский большой базовый словарь > копирование не завершено

  • 13 копирование успешно завершено

    Русско-английский большой базовый словарь > копирование успешно завершено

  • 14 Smeaton, John

    [br]
    b. 8 June 1724 Austhorpe, near Leeds, Yorkshire, England
    d. 28 October 1792 Austhorpe, near Leeds, Yorkshire, England
    [br]
    English mechanical and civil engineer.
    [br]
    As a boy, Smeaton showed mechanical ability, making for himself a number of tools and models. This practical skill was backed by a sound education, probably at Leeds Grammar School. At the age of 16 he entered his father's office; he seemed set to follow his father's profession in the law. In 1742 he went to London to continue his legal studies, but he preferred instead, with his father's reluctant permission, to set up as a scientific instrument maker and dealer and opened a shop of his own in 1748. About this time he began attending meetings of the Royal Society and presented several papers on instruments and mechanical subjects, being elected a Fellow in 1753. His interests were turning towards engineering but were informed by scientific principles grounded in careful and accurate observation.
    In 1755 the second Eddystone lighthouse, on a reef some 14 miles (23 km) off the English coast at Plymouth, was destroyed by fire. The President of the Royal Society was consulted as to a suitable engineer to undertake the task of constructing a new one, and he unhesitatingly suggested Smeaton. Work began in 1756 and was completed in three years to produce the first great wave-swept stone lighthouse. It was constructed of Portland stone blocks, shaped and pegged both together and to the base rock, and bonded by hydraulic cement, scientifically developed by Smeaton. It withstood the storms of the English Channel for over a century, but by 1876 erosion of the rock had weakened the structure and a replacement had to be built. The upper portion of Smeaton's lighthouse was re-erected on a suitable base on Plymouth Hoe, leaving the original base portion on the reef as a memorial to the engineer.
    The Eddystone lighthouse made Smeaton's reputation and from then on he was constantly in demand as a consultant in all kinds of engineering projects. He carried out a number himself, notably the 38 mile (61 km) long Forth and Clyde canal with thirty-nine locks, begun in 1768 but for financial reasons not completed until 1790. In 1774 he took charge of the Ramsgate Harbour works.
    On the mechanical side, Smeaton undertook a systematic study of water-and windmills, to determine the design and construction to achieve the greatest power output. This work issued forth as the paper "An experimental enquiry concerning the natural powers of water and wind to turn mills" and exerted a considerable influence on mill design during the early part of the Industrial Revolution. Between 1753 and 1790 Smeaton constructed no fewer than forty-four mills.
    Meanwhile, in 1756 he had returned to Austhorpe, which continued to be his home base for the rest of his life. In 1767, as a result of the disappointing performance of an engine he had been involved with at New River Head, Islington, London, Smeaton began his important study of the steam-engine. Smeaton was the first to apply scientific principles to the steam-engine and achieved the most notable improvements in its efficiency since its invention by Newcomen, until its radical overhaul by James Watt. To compare the performance of engines quantitatively, he introduced the concept of "duty", i.e. the weight of water that could be raised 1 ft (30 cm) while burning one bushel (84 lb or 38 kg) of coal. The first engine to embody his improvements was erected at Long Benton colliery in Northumberland in 1772, with a duty of 9.45 million pounds, compared to the best figure obtained previously of 7.44 million pounds. One source of heat loss he attributed to inaccurate boring of the cylinder, which he was able to improve through his close association with Carron Ironworks near Falkirk, Scotland.
    [br]
    Principal Honours and Distinctions
    FRS 1753.
    Bibliography
    1759, "An experimental enquiry concerning the natural powers of water and wind to turn mills", Philosophical Transactions of the Royal Society.
    Towards the end of his life, Smeaton intended to write accounts of his many works but only completed A Narrative of the Eddystone Lighthouse, 1791, London.
    Further Reading
    S.Smiles, 1874, Lives of the Engineers: Smeaton and Rennie, London. A.W.Skempton, (ed.), 1981, John Smeaton FRS, London: Thomas Telford. L.T.C.Rolt and J.S.Allen, 1977, The Steam Engine of Thomas Newcomen, 2nd edn, Hartington: Moorland Publishing, esp. pp. 108–18 (gives a good description of his work on the steam-engine).
    LRD

    Biographical history of technology > Smeaton, John

  • 15 Huygens, Christiaan

    SUBJECT AREA: Horology
    [br]
    b. 14 April 1629 The Hague, the Netherlands
    d. 8 June 1695 The Hague, the Netherlands
    [br]
    Dutch scientist who was responsible for two of the greatest advances in horology: the successful application of both the pendulum to the clock and the balance spring to the watch.
    [br]
    Huygens was born into a cultured and privileged class. His father, Constantijn, was a poet and statesman who had wide interests. Constantijn exerted a strong influence on his son, who was educated at home until he reached the age of 16. Christiaan studied law and mathematics at Ley den University from 1645 to 1647, and continued his studies at the Collegium Arausiacum in Breda until 1649. He then lived at The Hague, where he had the means to devote his time entirely to study. In 1666 he became a Member of the Académie des Sciences in Paris and settled there until his return to The Hague in 1681. He also had a close relationship with the Royal Society and visited London on three occasions, meeting Newton on his last visit in 1689. Huygens had a wide range of interests and made significant contributions in mathematics, astronomy, optics and mechanics. He also made technical advances in optical instruments and horology.
    Despite the efforts of Burgi there had been no significant improvement in the performance of ordinary clocks and watches from their inception to Huygens's time, as they were controlled by foliots or balances which had no natural period of oscillation. The pendulum appeared to offer a means of improvement as it had a natural period of oscillation that was almost independent of amplitude. Galileo Galilei had already pioneered the use of a freely suspended pendulum for timing events, but it was by no means obvious how it could be kept swinging and used to control a clock. Towards the end of his life Galileo described such a. mechanism to his son Vincenzio, who constructed a model after his father's death, although it was not completed when he himself died in 1642. This model appears to have been copied in Italy, but it had little influence on horology, partly because of the circumstances in which it was produced and possibly also because it differed radically from clocks of that period. The crucial event occurred on Christmas Day 1656 when Huygens, quite independently, succeeded in adapting an existing spring-driven table clock so that it was not only controlled by a pendulum but also kept it swinging. In the following year he was granted a privilege or patent for this clock, and several were made by the clockmaker Salomon Coster of The Hague. The use of the pendulum produced a dramatic improvement in timekeeping, reducing the daily error from minutes to seconds, but Huygens was aware that the pendulum was not truly isochronous. This error was magnified by the use of the existing verge escapement, which made the pendulum swing through a large arc. He overcame this defect very elegantly by fitting cheeks at the pendulum suspension point, progressively reducing the effective length of the pendulum as the amplitude increased. Initially the cheeks were shaped empirically, but he was later able to show that they should have a cycloidal shape. The cheeks were not adopted universally because they introduced other defects, and the problem was eventually solved more prosaically by way of new escapements which reduced the swing of the pendulum. Huygens's clocks had another innovatory feature: maintaining power, which kept the clock going while it was being wound.
    Pendulums could not be used for portable timepieces, which continued to use balances despite their deficiencies. Robert Hooke was probably the first to apply a spring to the balance, but his efforts were not successful. From his work on the pendulum Huygens was well aware of the conditions necessary for isochronism in a vibrating system, and in January 1675, with a flash of inspiration, he realized that this could be achieved by controlling the oscillations of the balance with a spiral spring, an arrangement that is still used in mechanical watches. The first model was made for Huygens in Paris by the clockmaker Isaac Thuret, who attempted to appropriate the invention and patent it himself. Huygens had for many years been trying unsuccessfully to adapt the pendulum clock for use at sea (in order to determine longitude), and he hoped that a balance-spring timekeeper might be better suited for this purpose. However, he was disillusioned as its timekeeping proved to be much more susceptible to changes in temperature than that of the pendulum clock.
    [br]
    Principal Honours and Distinctions
    FRS 1663. Member of the Académie Royale des Sciences 1666.
    Bibliography
    For his complete works, see Oeuvres complètes de Christian Huygens, 1888–1950, 22 vols, The Hague.
    1658, Horologium, The Hague; repub., 1970, trans. E.L.Edwardes, Antiquarian
    Horology 7:35–55 (describes the pendulum clock).
    1673, Horologium Oscillatorium, Paris; repub., 1986, The Pendulum Clock or Demonstrations Concerning the Motion ofPendula as Applied to Clocks, trans.
    R.J.Blackwell, Ames.
    Further Reading
    H.J.M.Bos, 1972, Dictionary of Scientific Biography, ed. C.C.Gillispie, Vol. 6, New York, pp. 597–613 (for a fuller account of his life and scientific work, but note the incorrect date of his death).
    R.Plomp, 1979, Spring-Driven Dutch Pendulum Clocks, 1657–1710, Schiedam (describes Huygens's application of the pendulum to the clock).
    S.A.Bedini, 1991, The Pulse of Time, Florence (describes Galileo's contribution of the pendulum to the clock).
    J.H.Leopold, 1982, "L"Invention par Christiaan Huygens du ressort spiral réglant pour les montres', Huygens et la France, Paris, pp. 154–7 (describes the application of the balance spring to the watch).
    A.R.Hall, 1978, "Horology and criticism", Studia Copernica 16:261–81 (discusses Hooke's contribution).
    DV

    Biographical history of technology > Huygens, Christiaan

  • 16 कृताकृत


    kṛitâ̱kṛita
    mfn. done andᅠ not done, done in part but not completed MBh. XII, 6542 (= 9946) ;

    prepared andᅠ not prepared, manufactured andᅠ not manufactured MBh. XIII, 2794 Yājñ. I, 286 ;
    optional ĀṡvṠr. ĀṡvGṛ. ;
    indifferent MBh. XIII, 7612 ;
    (ám, é) n. sg. andᅠ du. what has been done andᅠ what has not been done
    AV. XIX, 9, 2 ṠBr. XIV, 7, 2, 27 KaṭhUp. II, 14 ;
    - prasaṅgin mfn. in Gr. = nitya

    Sanskrit-English dictionary > कृताकृत

  • 17 Whitney, Eli

    [br]
    b. 8 December 1765 Westborough, Massachusetts, USA
    d. 8 January 1825 New Haven, Connecticut, USA
    [br]
    American inventor of the cotton gin and manufacturer of firearms.
    [br]
    The son of a prosperous farmer, Eli Whitney as a teenager showed more interest in mechanics than school work. At the age of 15 he began an enterprise business manufacturing nails in his father's workshop, even having to hire help to fulfil his orders. He later determined to acquire a university education and, his father having declined to provide funds, he taught at local schools to obtain the means to attend Leicester Academy, Massachusetts, in preparation for his entry to Yale in 1789. He graduated in 1792 and then decided to study law. He accepted a position in Georgia as a tutor that would have given him time for study; this post did not materialize, but on his journey south he met General Nathanael Greene's widow and the manager of her plantations, Phineas Miller (1764–1803). A feature of agriculture in the southern states was that the land was unsuitable for long-staple cotton but could yield large crops of green-seed cotton. Green-seed cotton was difficult to separate from its seed, and when Whitney learned of the problem in 1793 he quickly devised a machine known as the cotton gin, which provided an effective solution. He formed a partnership with Miller to manufacture the gin and in 1794 obtained a patent. This invention made possible the extraordinary growth of the cotton industry in the United States, but the patent was widely infringed and it was not until 1807, after amendment of the patent laws, that Whitney was able to obtain a favourable decision in the courts and some financial return.
    In 1798 Whitney was in financial difficulties following the failure of the initial legal action against infringement of the cotton gin patent, but in that year he obtained a government contract to supply 10,000 muskets within two years with generous advance payments. He built a factory at New Haven, Connecticut, and proposed to use a new method of manufacture, perhaps the first application of the system of interchangeable parts. He failed to supply the firearms in the specified time, and in fact the first 500 guns were not delivered until 1801 and the full contract was not completed until 1809.
    In 1812 Whitney made application for a renewal of his cotton gin patent, but this was refused. In the same year, however, he obtained a second contract from the Government for 15,000 firearms and a similar one from New York State which ensured the success of his business.
    [br]
    Further Reading
    J.Mirsky and A.Nevins, 1952, The World of Eli Whitney, New York (a good biography). P.J.Federico, 1960, "Records of Eli Whitney's cotton gin patent", Technology and Culture 1: 168–76 (for details of the cotton gin patent).
    R.S.Woodbury, 1960, The legend of Eli Whitney and interchangeable parts', Technology and Culture 1:235–53 (challenges the traditional view of Eli Whitney as the sole originator of the "American" system of manufacture).
    See also Technology and Culture 14(1973):592–8; 18(1977):146–8; 19(1978):609–11.
    RTS

    Biographical history of technology > Whitney, Eli

  • 18 схема визуального захода на посадку

    Серия заранее намеченных манёвров, выполняемых по визуальным ориентирам, от контрольной точки начального этапа захода на посадку или, в соответствующих случаях, от начала установленного маршрута прибытия до точки, с которой может быть выполнена посадка и после которой, если посадка не выполнена, может быть выполнена схема ухода на второй круг.
    A series of predetermined manoeuvres by visual reference, from the initial approach fix, or where applicable, from the beginning of a defined arrival route to a point from which a landing can be completed and thereafter, if a landing is not completed, a go-around procedure can be carried-out.
    (AN 4)
    Official definition added to An 4 by Amdt 53 (25/11/2004).

    Русско-английский словарь международной организации гражданской авиации > схема визуального захода на посадку

  • 19 कृत _kṛta

    कृत p. p. [कृ-क्त]
    1 Done, performed, made, effected accomplished, manufactured &c.; (p. p. of कृ 8. U. q. v.) ते करान् संप्रयच्छन्तु सुवर्णं च कृताकृतम् Mb.3.255.17; दिव्याः प्रसन्ना विविधाः सुराः कृतसुरा अपि Rām.5.11.22; natural and manufactured wines.
    -2 Wounded, hurt; सिद्ध्येत ते कृतमनोभवधर्षितायाः Bhāg.3.23.11.
    -3 Acquired, bought (a kind of son); Mb.13.49.4.
    -4 Cultivated; अकृतं च कृतात्क्षेत्राद् गौरजाविकमेव च Ms.1.114.
    -5 Appointed (as a duty); सो$पि यत्नेन संरक्ष्यो धर्मो राजकृतश्च यः Y.2.186.
    -6 Relating to, referring to; पतनीयकृते क्षेपे Y.2.21.
    -तम् 1 Work, deed, action; कृतं न वेत्ति Pt.1.424; un- grateful; Ms.7.197.
    -2 Service, benefit.
    -3 Conse- quence, result.
    -4 Aim, object.
    -5 N. of that side of a die which is marked with four points; this is lucky; cf. Vāj.3.18.
    -6 N. of the first of the four Yugas of the world extending over 1728 years of men (see Ms.1.69 and Kull. thereon).
    -7 The number '4'.
    -8 A stake at a game.
    -9 Prize or booty gained in a battle.
    -1 An offering.
    -11 Magic sorcery.
    -Comp. -अकृत a. done and not done; i. e. done in part but not completed; कृताकृतस्यैव च काञ्चनस्य Bu. Ch.2.2; that which is done and that which is not done (Dvandva Comp.) मा त्वा ताप्तां कृताकृते Mbh. on P.II.2.29; कृताकृतप्रसङ्गि नित्यम्. (
    -तः) the Supreme Being.
    -अङ्क a.
    1 marked, branded; कठ्यां कृताङ्को निर्वास्यः Ms.8.281.
    -2 numbered. (ङ्कः) that side of a die which is marked with four points.
    -अञ्जलि a. folding the hands in supplication; प्रणम्य शिरसा देवं कृताञ्जलिरभाषत Bg.11.14,35; Ms.4.154.
    -अनुकर a. following another's example, subservient.
    -अनुसारः custom, usage.
    -अन्त a. bringing to an end, termi- nating.
    (-तः) 1 Yama, the god of death; कृतान्त आसीत्समरो देवानां सह दानवैः Bhāg.9.6.13; द्वितीयं कृतान्त- मिवाटन्तं व्याधमपश्यत् H.1.
    -2 fate, destiny; कृतान्त एव सौमित्रे द्रष्टव्यो मत्प्रवासने Rām.2.22.15; क्रूरस्तस्मिन्नपि न सहते संगमं नौ कृतान्तः Me.17.
    -3 a demonstrated con- clusion, dogma, a proved doctrine; दैवं पुरुषकारश्च कृतान्ते- नोपपद्यते Mb.12.153.5; यथा लौकिकेषु वैदिकेषु च कृतान्तेषु Mbh. on P.I.1.1,56; साङ्ख्ये कृतान्ते प्रोक्तानि Bg.18.13.
    -4 a sinful or inauspicious action.
    -5 an epithet of Saturn.
    -6 Saturday.
    -7 the inevitable result of former actions.
    -8 the second lunar mansion.
    -9 the number 'two'. ˚कुशल an astrologer; आधिराज्ये$भिषेको मे ब्राह्मणैः पतिना सह । कृतान्त- कुशलैरुक्तं तत्सर्वं वितथीकृतम् Rām.6.48.14. ˚जनकः the sun.
    -अन्नम् 1 cooked food. कृतान्नमुदकं स्त्रियः Ms.9.219;11.3.
    -2 digested food.
    -3 excrement.
    -अपराध a. guilty, offender, criminal.
    - अभय a. saved from fear or danger.
    -अभिषेक a. crowned, inaugurated. (
    -कः) a prince.
    -अभ्यास a. practised.
    -अयः the die called कृत marked with four points.
    -अर्थ a.
    1 having gained one's object, successful; एकः कृतार्थो भवते वीतशोकः Śwet. Up.2.14.
    -2 satisfied; happy, contented; वयं कृतार्था इत्यभिमन्यन्ति बालाः Muṇḍ.1.2.9; कृतः कृतार्थो$स्मि निबर्हितांहसा Śi.1.29; R.8.3; Ki.4.9; Ś.2.1; Pt.1.194.
    -3 clever.
    -4 that which has served its purpose (and hence in- capable of yielding any further sense or serving any other purpose); पुरुषे यागं श्रावयित्वा कृतार्थः शब्द एकस्य द्वयोर्बहूनां वा यागं न वारयति । ŚB. on MS.6.2.3. सकृत् कृत्वा कृतार्थः शब्दः न नियमः पौनःपुन्ये । ŚB. on MS.6.2.27; सा चाकाङ्क्षा एकेनापि कृतार्था भवतीत्युक्तम् । ŚB. on MS.11.1.13. (कृतार्थीकृ
    1 to render fruitful or successful; कृतार्थीकृत्य तं विप्रम् Ks.74.125.
    -2 to make good; कान्तं प्रत्युपचारतश्चतुरया कोपः कृतार्थीकृतः Amaru.15; so कृतार्थयति to make fruitful; Māl.3.6.)
    -अवधान a. careful, attentive.
    -अवधि a.
    1 fixed, appointed.
    -2 bounded, limited.
    -अवमर्ष a.
    1 effacing from recollection.
    -2 intolerant.
    -अवस्थ a.
    1 summoned, caused to be present; Ms.8.6.
    -2 fixed, settled.
    -अस्त्र a.
    1 armed.
    -2 trained in the science of arms or missiles; पित्रा संवर्धितो नित्यं कृतास्त्रः सांपरा- यिकः R.17.62.
    - अहक a. having performed the daily ceremonies.
    - आगम a. advanced, proficient, skilled. (-m.) the Supreme soul.
    -आगस् a. guilty, offending, criminal, sinful; अध्ने प्र शिरो जहि ब्रह्मजस्य कृतागसः Av.12.5.6; कृतागाः कौटिल्यो मुजग इव निर्याय नगरात् Mu.3.11.
    -आत्मन् a.
    1 having control over oneself, self-possessed, of a selfgoverned spirit; कृतात्मा ब्रह्मलोकमभिसंभवामि Ch. Up.8.13.1; कृतात्मानो वीतरागाः प्रशान्ताः Muṇḍ. Up.3.2.5; Rām.5.61.6; ऐहिष्ट तं कारयितुं कृतात्मा Bk.1.11.
    -2 purified in mind; magnanimous; तमरिघ्रं कृतात्मानं क्षिप्रं द्रक्ष्यसि राघवम् Rām.5.39.48.
    - आभरण a. adorned.
    -आयास a. labouring, suffering.
    - आलय a. one who has taken up his abode in any place; यत्र ते दयिता भार्या तनयाश्च कृतालयाः Rām. (
    -यः) a frog; dog ? M. W.
    -आवास a lodging.
    -आस्पद a.
    1 governed; ruled.
    -2 supporting, resting on.
    -3 residing in.
    -आहार a. having taken one's meals.
    -आह्वान a. challenged.
    -उत्साह a. diligent, making effort, striving.
    - उदक a. one who had performed his ablutions; Mb.3.
    -उद्वाह a.
    1 married.
    -2 practising penance by standing with up-lifted hands.
    -उपकार a.
    1 favoured, befriended, assisted; अज्ञातभर्तृव्यसना मुहूर्तं कृतोपकारेव रतिर्बभूव Ku.3.73.
    -2 friendly.
    -उपभोग a. used, enjoyed.
    -कर, -कारिन् a. Enjoining what is already known or done; कृतकरो हि विधिरनर्थकः स्यात् ŚB. on MS.1.5.58; कृतकरं शास्त्रमनर्थकं स्यात् ŚB. on MS.1.7.25; कृतकारि खलु शास्त्रं पर्जन्यवत् Mbh. on P.I.2.9.
    -कर्मन् a.
    1 one who has done his work; R.9.3.
    -2 skilful, clever. (-m.)
    1 the Supreme spirit.
    -2 a Saṁnyāsin.
    -काम a. one whose desires are fulfilled.
    -कार्य a.
    1 one who has done his work or obtained his object.
    -2 having no need of another's aid.
    -काल a.
    1 fixed or settled as to time.
    -2 who has waited a certain time. (
    -लः) appointed time; कृतशिल्पो$पि निवसेत्कृतकालं गुरोर्गृहे Y.2.184.
    -कृत्य, -क्रिय a.
    1 who has accomplished his object; Bg.15.2.
    -2 satisfied, contented; Śānti.3.19; Māl.4.3.
    -3 clever.
    -4 having done his duty; कृतकृत्यो विधिर्मन्ये न वर्धयति तस्य ताम् Śi.2.32.
    -क्रयः a purchaser.
    -क्रियः 1 one who has accomplished any act.
    -2 one who has fulfilled his duty.
    -3 one who has performed a religious cere- mony; Ms.5.99.
    -क्षण a.
    1 waiting impatiently for the exact moment; कृतक्षणाहं भद्रं ते गमनं प्रति राघव Rām.2.29.15; वयं सर्वे सोत्सुकाः कृतक्षणास्तिष्ठामः Pt.1.
    -2 one who has got an opportunity.
    -घ्न a.
    1 ungrateful; Ms.4.214;8.89.
    -2 defeating all previous measures.
    -चूडः a boy on whom the ceremony of tonsure has been performed; Ms.5.58,67; नृणामकृतचूडानां विशुद्धिर्नौशिकी स्मृता.
    -जन्मन् a. planted; Ku.5.6.
    -ज्ञ a.
    1 grateful; Ms.7.29,21; Y.1.38.
    -2 correct in conduct; कृतज्ञतामस्य वदन्ति सम्पदः Ki.
    (-ज्ञः) 1 a dog.
    -2 an epithet of Śiva.
    -तीर्थ a.
    1 one who has visited or frequented holy places.
    -2 one who studies with a professional teacher.
    -3 fertile in means or expedients.
    -4 a guide.
    -5 rendered accessible or easy; Ki.2.3.
    -दार a. married.
    -दासः a servant hired for a stated period, a hired servant.
    -दूषणम् spoiling what is done; उद्धतायाः पुनरुद्धनने न हि किञ्चित्कार्यमस्ति । केवलं कृतदूषणं भवेत् । ृŚB. on MS.12.2.16. (see कृतदूषा)
    -दूषा f. a blemish or vitiating factor for what is done; अकर्म वा कृतदूषा स्यात् MS.12.1.1. (कृतायाः दूषणम् ŚB).
    -धी a.
    1 prudent, considerate.
    -2 learned, educated, wise; पुत्रेभ्यः कृतवेदिनां कृतधियां येषां न भिन्ना वयम् Mu.5.2; Bg.2.54; Śi.2.79.
    -नामधेय a. named, called as; Ś6.
    -निर्णेजनः a penitent. -a. one who has performed penance; कृतनिर्णेजनांश्चैव न जुगुप्सेत कर्हिचित् Ms.11.189.
    -निश्चय a.
    1 resolute, resolved; युद्धाय कृतनिश्चयः Bg.2.37.
    -2 confident, sure.
    -पुङ्ख a. skilled in archery.
    -पूर्व a. done formerly.
    -प्रतिकृतम् assault and counter-assault, attack and resistance; R.12.94.
    -प्रतिज्ञ a.
    1 one who has made an agreement or engagement.
    -2 one who has fulfilled his promise.
    -प्रयोजन a. one who has attained his object; Ks.13.158.
    -फल n. successful. (
    -लम्) result, consequence.
    -बुद्धि a.
    1 learned, educated, wise; विद्वत्सु कृतबुद्धयः (श्रेष्ठाः) Ms.1.97, 7.3.
    -2 a man of resolute character.
    -3 informed of one's duty.
    -ब्रह्मन् a. Ved. one who has per- formed his devotions; कृतब्रह्मा शूशुवद् रातहव्य इत् Rv.2. 25.1.
    -मङ्गल a. blessed, consecrated.
    -मति a. firm, resolute.
    -मन्यु a. indignant.
    -मालः, -लकः 1 a kind of cassia.
    -2 the spotted antelope.
    -मुख a. learned, clever, wise.
    -युगम् the first (golden) of the four ages.
    -रूप one who knows the customary rites (कृतकल्प); Rām.2.1.2.
    -लक्षण a.
    1 stamped, marked.
    -2 branded; ज्ञातिसम्बन्धिभिस्त्वेतास्त्यक्तव्याः कृत- लक्षणाः Ms.9.239.
    -3 excellent, amiable.
    -4 defined, dis- criminated.
    -वर्मन् m. N. of a warrior on the side of the Kauravas who with Kṛipa and Aśvatthāman survived the general havoc of the great Bhārata war. He was afterwards slain by Sātyaki.
    -वापः a penitent who has shaven his head and chin; Ms.11.18.
    -विद् a. grateful; तस्यापवर्ग्यशरणं तव पादमूलं विस्मर्यते कृतविदा कथमार्तबन्धो Bhāg.4.9.8.
    -विद्य a. learned, educated; शूरो$सि कृत- विद्यो$सि Pt.4.43; सुवर्णपुष्पितां पृथ्वीं विचिन्वन्ति त्रयो जनाः । शूरश्च कृतविद्यश्च यश्च जानाति सेवितुम् ॥ Pt.1.45.
    -वीर्य a. being strong or powerful; Av.17.1.27. (
    -र्यः) N. of the father of Sahasrārjuna.
    -वेतन a. hired, paid (as a servant); प्रमादमृतनष्टांश्च प्रदाप्यः कृतवेतनः Y.2.164.
    -वेदिन् a.
    1 grateful; न तथा कृतवेदिनां करिष्यन्प्रियतामेति यथा कृता- वदानः Ki.13.32; see कृतज्ञ.
    -2 observant of propriety.
    -वेश a. attired, decorated; गतवति कृतवेशे केशवे कुञ्जशय्याम् Gīt.11.
    -व्यावृत्ति a. dislodged or dismissed from office, set aside; Ku.2.27.
    -शिल्प a. skilled in art or trade; कृतशिल्पो$पि निवसेत्कृतकालं गुरोर्गृहे Y.2.184.
    -शोभ a.
    1 splendid.
    -2 beautiful.
    -3 handy, dexterous.
    -शौच a. purified; पुण़्डरीकमवाप्नोति कृतशौचो भवेच्च सः Mb.3.83.21.
    -श्मश्रुः one who is shaven; न हि कृतश्मश्रुः पुनः श्मश्रूणि कार- यति Mbh. on P.I.2.9.
    -श्रमः, -परिश्रमः one who has studied; कृतपरिश्रमो$स्मि ज्योतिःशास्त्रे Mu.1; I have devoted my time to (spent my labours on) the science of astro- nomy.
    -संकल्प a. resolved, determined.
    -संकेत a. making an appointment; नामसमेतं कृतसंकेतं वादयते मृदु वेणुम् Gīt.5.
    -संज्ञ a.
    1 having presence of mind... स्थापयेद् दासान् कृत- संज्ञान् समन्ततः Ms.
    -2 restored to consciousness or senses.
    -3 aroused.
    -4 one to whom sign has been given; Rāj. T.4.221.
    -संनाह a. clad in armour, accoutred.
    -संस्कार a.
    1 one who has performed all purificatory rites, ini- tiated; वैश्यस्तु कृतसंस्कारः Ms.9.326; R.1.78.
    -2 Pre- pared, adorned.
    -सापत्निका, -सापत्नी, सापत्नीका, -सापत्नका, सपत्निका a woman whose husband has mar- ried another wife, a married woman having a co-wife or a superseded wife.
    -हस्त, -हस्तक a.
    1 dexterous, clever, skilful, handy.
    -2 skilled in archery.
    -हस्तता 1 skill, dexterity;... संनिपाते । सुमहति कृतहस्ताः सैनिकास्तं ररक्षुः ॥ Śiva. B.13.3.47.
    -2 skill in archery or generally in handling arms; कौरव्ये कृतहस्तता पुनरियं देवे यथा सीरिणि Ve.6.13; Mv.6.41.

    Sanskrit-English dictionary > कृत _kṛta

  • 20 असमाप्त _asamāpta

    असमाप्त a.
    1 Not completed or finished, left in- complete; असमाप्तविधिर्यतो मुनिः R.8.76; Ku.4.19.
    -2 Not fully acquired.

    Sanskrit-English dictionary > असमाप्त _asamāpta

См. также в других словарях:

  • not completed — index partial (part) Burton s Legal Thesaurus. William C. Burton. 2006 …   Law dictionary

  • begun but not completed — index inchoate Burton s Legal Thesaurus. William C. Burton. 2006 …   Law dictionary

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