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paper transactions

  • 1 paper transactions

    English_Russian capital issues dictionary > paper transactions

  • 2 Paper Trading

    Энергосистемы: (or "Get Shorty": involves selling ancillary services short in day-ahead transactions) "торговля бумагами" (или "взять короткую": мошенническая продажа дополнительных услуг в сделках на рынке следующего дня)

    Универсальный англо-русский словарь > Paper Trading

  • 3 Paper Trading (or Get Shorty: involves selling ancillary services short in day-ahead transactions)

    Энергосистемы: "торговля бумагами" (или "взять короткую": мошенническая продажа дополнительных услуг в сделках на рынке следующего дня)

    Универсальный англо-русский словарь > Paper Trading (or Get Shorty: involves selling ancillary services short in day-ahead transactions)

  • 4 Get Shorty (or Paper Trading: involves selling ancillary services short in day-ahead transactions)

    Энергосистемы: "взять короткую" (или "торговля бумагами": мошенническая продажа дополнительных услуг в сделках на рынке следующего дня)

    Универсальный англо-русский словарь > Get Shorty (or Paper Trading: involves selling ancillary services short in day-ahead transactions)

  • 5 transaction

    English_Russian capital issues dictionary > transaction

  • 6 electronic banking

    "The use of electronic technologies, such as automated teller machines (ATMs), direct payroll deposits, automatic bill payments, and debit cards, to perform financial transactions. Electronic banking replaces paper transactions and visits to brick-and-mortar facilities."

    English-Arabic terms dictionary > electronic banking

  • 7 Volta, Alessandro Giuseppe Antonio Anastasio

    SUBJECT AREA: Electricity
    [br]
    b. 18 February 1745 Como, Italy
    d. 5 March 1827 Como, Italy
    [br]
    Italian physicist, discoverer of a source of continuous electric current from a pile of dissimilar metals.
    [br]
    Volta had an early command of English, French and Latin, and also learned to read Dutch and Spanish. After completing studies at the Royal Seminary in Como he was involved in the study of physics, chemistry and electricity. He became a teacher of physics in his native town and in 1779 was appointed Professor of Physics at the University of Pavia, a post he held for forty years.
    With a growing international reputation and a wish to keep abreast of the latest developments, in 1777 he began the first of many travels abroad. A journey started in 1781 to Switzerland, Germany, Belgium, Holland, France and England lasted about one year. By 1791 he had been elected to membership of many learned societies, including those in Zurich, Berlin, Berne and Paris. Volta's invention of his pile resulted from a controversy with Luigi Galvani, Professor of Anatomy at the University of Bologna. Galvani discovered that the muscles of frogs' legs contracted when touched with two pieces of different metals and attributed this to a phenomenon of the animal tissue. Volta showed that the excitation was due to a chemical reaction resulting from the contact of the dissimilar metals when moistened. His pile comprised a column of zinc and silver discs, each pair separated by paper moistened with brine, and provided a source of continuous current from a simple and accessible source. The effectiveness of the pile decreased as the paper dried and Volta devised his crown of cups, which had a longer life. In this, pairs of dissimilar metals were placed in each of a number of cups partly filled with an electrolyte such as brine. Volta first announced the results of his experiments with dissimilar metals in 1800 in a letter to Sir Joseph Banks, President of the Royal Society. This letter, published in the Transactions of the Royal Society, has been regarded as one of the most important documents in the history of science. Large batteries were constructed in a number of laboratories soon after Volta's discoveries became known, leading immediately to a series of developments in electrochemistry and eventually in electromagnetism. Volta himself made little further contribution to science. In recognition of his achievement, at a meeting of the International Electrical Congress in Paris in 1881 it was agreed to name the unit of electrical pressure the "volt".
    [br]
    Principal Honours and Distinctions
    FRS 1791. Royal Society Copley Medal 1794. Knight of the Iron Crown, Austria, 1806. Senator of the Realm of Lombardy 1809.
    Bibliography
    1800, Philosophical Transactions of the Royal Society 18:744–6 (Volta's report on his discovery).
    Further Reading
    G.Polvani, 1942, Alessandro Volta, Pisa (the best account available).
    B.Dibner, 1964, Alessandro Volta and the Electric Battery, New York (a detailed account).
    C.C.Gillispie (ed.), 1976, Dictionary of Scientific Biography, Vol. XIV, New York, pp.
    66–82 (includes an extensive biography).
    F.Soresni, 1988, Alessandro Volta, Milan (includes illustrations of Volta's apparatus, with brief text).
    GW

    Biographical history of technology > Volta, Alessandro Giuseppe Antonio Anastasio

  • 8 Donkin, Bryan I

    [br]
    b. 22 March 1768 Sandoe, Northumberland, England
    d. 27 February 1855 London, England
    [br]
    English mechanical engineer and inventor.
    [br]
    It was intended that Bryan Donkin should follow his father's profession of surveyor and land agent, so he spent a year or so in that occupation before he was apprenticed to John Hall, millwright of Dartford, Kent. Donkin remained with the firm after completing his apprenticeship, and when the Fourdrinier brothers in 1802 introduced from France an invention for making paper in continuous lengths they turned to John Hall for help in developing the machine: Donkin was chosen to undertake the work. In 1803 the Fourdriniers established their own works in Bermondsey, with Bryan Donkin in charge. By 1808 Donkin had acquired the works, but he continued to manufacture paper-making machines, paying a royalty to the patentees. He also undertook other engineering work including water-wheels for driving paper and other mills. He was also involved in the development of printing machinery and the preservation of food in airtight containers. Some of these improvements were patented, and he also obtained patents relating to gearing, steel pens, paper-making and railway wheels. Other inventions of Bryan Donkin that were not patented concerned revolution counters and improvements in accurate screw threads for use in graduating mathematical scales. Donkin was elected a member of the Society of Arts in 1803 and was later Chairman of the Society's Committee of Mechanics and a Vice-President of the society. He was also a member of the Royal Astronomical Society. In 1818 a group of eight young men founded the Institution of Civil Engineers; two of them were apprentices of Bryan Donkin and he encouraged their enterprise. After a change in the rules permitted the election of members over the age of 35, he himself became a member in 1821. He served on the Council and became a Vice- President, but he resigned from the Institution in 1848.
    [br]
    Principal Honours and Distinctions
    FRS 1838. Vice-President, Institution of Civil Engineers 1826–32, 1835–45. Member, Smeatonian Society of Civil Engineers 1835; President 1843. Society of Arts Gold Medal 1810, 1819.
    Further Reading
    S.B.Donkin, 1949–51, "Bryan Donkin, FRS, MICE 1768–1855", Transactions of the Newcomen Society 27:85–95.
    RTS

    Biographical history of technology > Donkin, Bryan I

  • 9 Garforth, William Edward

    [br]
    b. 1845 Dukinfield, Cheshire, England
    d. 1 October 1921 Pontefract, Yorkshire, England
    [br]
    English colliery manager, pioneer in machine-holing and the safety of mines.
    [br]
    After Menzies conceived his idea of breaking off coal with machines in 1761, many inventors subsequently followed his proposals through into the practice of underground working. More than one century later, Garforth became one of the principal pioneers of machine-holing combined with the longwall method of working in order to reduce production costs and increase the yield of coal. Having been appointed agent to Pope \& Pearson's Collieries, West Yorkshire, in 1879, of which company he later became Managing Director and Chairman, he gathered a great deal of experience with different methods of cutting coal. The first disc machine was exhibited in London as early as 1851, and ten years later a pick machine was invented. In 1893 he introduced an improved type of deep undercutting machine, his "diamond" disc coal-cutter, driven by compressed air, which also became popular on the European continent.
    Besides the considerable economic advantages it created, the use of machinery for mining coal increased the safety of working in hard and thin seams. The improvement of safety in mining technology was always his primary concern, and as a result of his inventions and his many publications he became the leading figure in the British coal mining industry at the beginning of the twentieth century; safety lamps still carry his name. In 1885 he invented a firedamp detector, and following a severe explosion in 1886 he concentrated on coal-dust experiments. From the information he obtained of the effect of stone-dust on a coal-dust explosion he proposed the stone-dust remedy to prevent explosions of coal-dust. As a result of discussions which lasted for decades and after he had been entrusted with the job of conducting the British coal-dust experiments, in 1921 an Act made it compulsory in all mines which were not naturally wet throughout to treat all roads with incombustible dust so as to ensure that the dust always consisted of a mixture containing not more than 50 per cent combustible matter. In 1901 Garforth erected a surface gallery which represented the damaged roadways of a mine and could be filled with noxious fumes to test self-contained breathing apparata. This gallery formed the model from which all the rescue-stations existing nowadays have been developed.
    [br]
    Principal Honours and Distinctions
    Knighted 1914. LLD Universities of Birmingham and Leeds 1912. President, Midland Institute 1892–4. President, The Institution of Mining Engineers 1911–14. President, Mining Association of Great Britain 1907–8. Chairman, Standing Committee on Mining, Advisory Council for Scientific and Industrial Research. Fellow of the Geological Society of London. North of England Institute of Mining and Mechanical Engineers Greenwell Silver Medal 1907. Royal Society of Arts Fothergill Gold Medal 1910. Medal of the Institution of Mining Engineers 1914.
    Bibliography
    1901–2, "The application of coal-cutting machines to deep mining", Transactions of the Federated Institute of Mining Engineers 23: 312–45.
    1905–6, "A new apparatus for rescue-work in mines", Transactions of the Institution of Mining Engineers 31:625–57.
    1902, "British Coal-dust Experiments". Paper communicated to the International Congress on Mining, Metallurgy, Applied Mechanics and Practical Geology, Dusseldorf.
    Further Reading
    Garforth's name is frequently mentioned in connection with coal-holing, but his outstanding achievements in improving safety in mines are only described in W.D.Lloyd, 1921, "Memoir", Transactions of the Institution of Mining Engineers 62:203–5.
    WK

    Biographical history of technology > Garforth, William Edward

  • 10 Perkins, Jacob

    [br]
    b. 9 July 1766 Newburyport, Massachusetts, USA
    d. 30 July 1849 London, England
    [br]
    American inventor of a nail-making machine and a method of printing banknotes, investigator of the use of steam at very high pressures.
    [br]
    Perkins's occupation was that of a gold-and silversmith; while he does not seem to have followed this after 1800, however, it gave him the skills in working metals which he would continue to employ in his inventions. He had been working in America for four years before he patented his nail-making machine in 1796. At the time there was a great shortage of nails because only hand-forged ones were available. By 1800, other people had followed his example and produced automatic nail-making machines, but in 1811 Perkins' improved machines were introduced to England by J.C. Dyer. Eventually Perkins had twenty-one American patents for a range of inventions in his name.
    In 1799 Perkins invented a system of engraving steel plates for printing banknotes, which became the foundation of modern siderographic work. It discouraged forging and was adopted by many banking houses, including the Federal Government when the Second United States Bank was inaugurated in 1816. This led Perkins to move to Philadelphia. In the intervening years, Perkins had improved his nail-making machine, invented a machine for graining morocco leather in 1809, a fire-engine in 1812, a letter-lock for bank vaults and improved methods of rolling out spoons in 1813, and improved armament and equipment for naval ships from 1812 to 1815.
    It was in Philadelphia that Perkins became interested in the steam engine, when he met Oliver Evans, who had pioneered the use of high-pressure steam. He became a member of the American Philosophical Society and conducted experiments on the compressibility of water before a committee of that society. Perkins claimed to have liquified air during his experiments in 1822 and, if so, was the real discoverer of the liquification of gases. In 1819 he came to England to demonstrate his forgery-proof system of printing banknotes, but the Bank of England was the only one which did not adopt his system.
    While in London, Perkins began to experiment with the highest steam pressures used up to that time and in 1822 took out his first of nineteen British patents. This was followed by another in 1823 for a 10 hp (7.5 kW) engine with only 2 in. (51 mm) bore, 12 in. (305 mm) stroke but a pressure of 500 psi (35 kg/cm2), for which he claimed exceptional economy. After 1826, Perkins abandoned his drum boiler for iron tubes and steam pressures of 1,500 psi (105 kg/cm2), but the materials would not withstand such pressures or temperatures for long. It was in that same year that he patented a form of uniflow cylinder that was later taken up by L.J. Todd. One of his engines ran for five days, continuously pumping water at St Katherine's docks, but Perkins could not raise more finance to continue his experiments.
    In 1823 one his high-pressure hot-water systems was installed to heat the Duke of Wellington's house at Stratfield Saye and it acquired a considerable vogue, being used by Sir John Soane, among others. In 1834 Perkins patented a compression ice-making apparatus, but it did not succeed commercially because ice was imported more cheaply from Norway as ballast for sailing ships. Perkins was often dubbed "the American inventor" because his inquisitive personality allied to his inventive ingenuity enabled him to solve so many mechanical challenges.
    [br]
    Further Reading
    Historical Society of Pennsylvania, 1943, biography which appeared previously as a shortened version in the Transactions of the Newcomen Society 24.
    D.Bathe and G.Bathe, 1943–5, "The contribution of Jacob Perkins to science and engineering", Transactions of the Newcomen Society 24.
    D.S.L.Cardwell, 1971, From Watt to Clausius. The Rise of Thermodynamics in the Early Industrial Age, London: Heinemann (includes comments on the importance of Perkins's steam engine).
    A.F.Dufton, 1940–1, "Early application of engineering to warming of buildings", Transactions of the Newcomen Society 21 (includes a note on Perkins's application of a high-pressure hot-water heating system).
    RLH

    Biographical history of technology > Perkins, Jacob

  • 11 Bevan, Edward John

    [br]
    b. 11 December 1856 Birkenhead, England
    d. 17 October 1921 London, England
    [br]
    English co-inventor of the " viscose rayon " process for making artificial silk.
    [br]
    Bevan began his working life as a chemist in a soap works at Runcorn, but later studied chemistry at Owens College, Manchester. It was there that he met and formed a friendship with C.F. Cross, with whom he started to work on cellulose. Bevan moved to a paper mill in Scotland but then went south to London, where he and Cross set up a partnership in 1885 as consulting and analytical chemists. Their work was mainly concerned with the industrial utilization of cellulose, and with the problems of the paper and jute industries. Their joint publication, A Text-book of Paper-making, which first appeared in 1888 and went into several editions, became the standard reference and textbook on the subject. The book has a long introductory chapter on cellulose.
    In 1892 Cross, Bevan and Clayton Beadle discovered viscose, or sodium cellulose xanthate, and took out the patent which was to be the foundation of the "viscose rayon" industry. They had their own laboratory at Station Avenue, Kew Gardens, where they carried out much work that eventually resulted in viscose: cellulose, usually in the form of wood pulp, was treated first with caustic soda and then with carbon disulphide to form the xanthate, which was then dissolved in a solution of dilute caustic soda to produce a viscous liquid. After being aged, the viscose was extruded through fine holes in a spinneret and coagulated in a dilute acid to regenerate the cellulose as spinnable fibres. At first there was no suggestion of spinning it into fibre, but the hope was to use it for filaments in incandescent electric light bulbs. The sheen on the fibres suggested their possible use in textiles and the term "artificial silk" was later introduced. Cross and Bevan also discovered the acetate "Celanese", which was cellulose triacetate dissolved in acetone and spun in air, but both inventions needed much development before they could be produced commercially.
    In 1892 Bevan turned from cellulose to food and drugs and left the partnership to become Public Analyst to Middlesex County Council, a post he held until his death, although in 1895 he and Cross published their important work Cellulose. He was prominent in the affairs of the Society of Public Analysts and became one of its officials.
    [br]
    Bibliography
    1888, with C.F.Cross, A Text-book of Papermaking.
    1892, with C.F.Cross and C.Beadle, British patent no. 8,700 (viscose). 1895, with C.F.Cross, Cellulose.
    Further Reading
    Obituary, 1921, Journal of the Chemical Society.
    Obituary, 1921, Journal of the Society of Chemical Industry.
    Edwin J.Beer, 1962–3, "The birth of viscose rayon", Transactions of the Newcomen Society 35 (an account of the problems of developing viscose rayon; Beer worked under Cross in the Kew laboratories).
    RLH

    Biographical history of technology > Bevan, Edward John

  • 12 Curr, John

    [br]
    b. 1756 Kyo, near Lanchester, or in Greenside, near Ryton-on-Tyne, Durham, England
    d. 27 January 1823 Sheffield, England
    [br]
    English coal-mine manager and engineer, inventor of flanged, cast-iron plate rails.
    [br]
    The son of a "coal viewer", Curr was brought up in the West Durham colliery district. In 1777 he went to the Duke of Norfolk's collieries at Sheffield, where in 1880 he was appointed Superintendent. There coal was conveyed underground in baskets on sledges: Curr replaced the wicker sledges with wheeled corves, i.e. small four-wheeled wooden wagons, running on "rail-roads" with cast-iron rails and hauled from the coal-face to the shaft bottom by horses. The rails employed hitherto had usually consisted of plates of iron, the flange being on the wheels of the wagon. Curr's new design involved flanges on the rails which guided the vehicles, the wheels of which were unflanged and could run on any hard surface. He appears to have left no precise record of the date that he did this, and surviving records have been interpreted as implying various dates between 1776 and 1787. In 1787 John Buddle paid tribute to the efficiency of the rails of Curr's type, which were first used for surface transport by Joseph Butler in 1788 at his iron furnace at Wingerworth near Chesterfield: their use was then promoted widely by Benjamin Outram, and they were adopted in many other English mines. They proved serviceable until the advent of locomotives demanded different rails.
    In 1788 Curr also developed a system for drawing a full corve up a mine shaft while lowering an empty one, with guides to separate them. At the surface the corves were automatically emptied by tipplers. Four years later he was awarded a patent for using double ropes for lifting heavier loads. As the weight of the rope itself became a considerable problem with the increasing depth of the shafts, Curr invented the flat hemp rope, patented in 1798, which consisted of several small round ropes stitched together and lapped upon itself in winding. It acted as a counterbalance and led to a reduction in the time and cost of hoisting: at the beginning of a run the loaded rope began to coil upon a small diameter, gradually increasing, while the unloaded rope began to coil off a large diameter, gradually decreasing.
    Curr's book The Coal Viewer (1797) is the earliest-known engineering work on railway track and it also contains the most elaborate description of a Newcomen pumping engine, at the highest state of its development. He became an acknowledged expert on construction of Newcomen-type atmospheric engines, and in 1792 he established a foundry to make parts for railways and engines.
    Because of the poor financial results of the Duke of Norfolk's collieries at the end of the century, Curr was dismissed in 1801 despite numerous inventions and improvements which he had introduced. After his dismissal, six more of his patents were concerned with rope-making: the one he gained in 1813 referred to the application of flat ropes to horse-gins and perpendicular drum-shafts of steam engines. Curr also introduced the use of inclined planes, where a descending train of full corves pulled up an empty one, and he was one of the pioneers employing fixed steam engines for hauling. He may have resided in France for some time before his death.
    [br]
    Bibliography
    1788. British patent no. 1,660 (guides in mine shafts).
    1789. An Account of tin Improved Method of Drawing Coals and Extracting Ores, etc., from Mines, Newcastle upon Tyne.
    1797. The Coal Viewer and Engine Builder's Practical Companion; reprinted with five plates and an introduction by Charles E.Lee, 1970, London: Frank Cass, and New York: Augustus M.Kelley.
    1798. British patent no. 2,270 (flat hemp ropes).
    Further Reading
    F.Bland, 1930–1, "John Curr, originator of iron tram roads", Transactions of the Newcomen Society 11:121–30.
    R.A.Mott, 1969, Tramroads of the eighteenth century and their originator: John Curr', Transactions of the Newcomen Society 42:1–23 (includes corrections to Fred Bland's earlier paper).
    Charles E.Lee, 1970, introduction to John Curr, The Coal Viewer and Engine Builder's Practical Companion, London: Frank Cass, pp. 1–4; orig. pub. 1797, Sheffield (contains the most comprehensive biographical information).
    R.Galloway, 1898, Annals of Coalmining, Vol. I, London; reprinted 1971, London (provides a detailed account of Curr's technological alterations).
    WK / PJGR

    Biographical history of technology > Curr, John

  • 13 Froude, William

    SUBJECT AREA: Ports and shipping
    [br]
    b. 1810 Dartington, Devon, England
    d. 4 May 1879 Simonstown, South Africa
    [br]
    English naval architect; pioneer of experimental ship-model research.
    [br]
    Froude was educated at a preparatory school at Buckfastleigh, and then at Westminster School, London, before entering Oriel College, Oxford, to read mathematics and classics. Between 1836 and 1838 he served as a pupil civil engineer, and then he joined the staff of Isambard Kingdom Brunel on various railway engineering projects in southern England, including the South Devon Atmospheric Railway. He retired from professional work in 1846 and lived with his invalid father at Dartington Parsonage. The next twenty years, while apparently unproductive, were important to Froude as he concentrated his mind on difficult mathematical and scientific problems. Froude married in 1839 and had five children, one of whom, Robert Edmund Froude (1846–1924), was to succeed him in later years in his research work for the Admiralty. Following the death of his father, Froude moved to Paignton, and there commenced his studies on the resistance of solid bodies moving through fluids. Initially these were with hulls towed through a house roof storage tank by wires taken over a pulley and attached to falling weights, but the work became more sophisticated and was conducted on ponds and the open water of a creek near Dartmouth. Froude published work on the rolling of ships in the second volume of the Transactions of the then new Institution of Naval Architects and through this became acquainted with Sir Edward Reed. This led in 1870 to the Admiralty's offer of £2,000 towards the cost of an experimental tank for ship models at Torquay. The tank was completed in 1872 and tests were carried out on the model of HMS Greyhound following full-scale towing trials which had commenced on the actual ship the previous year. From this Froude enunciated his Law of Comparisons, which defines the rules concerning the relationship of the power required to move geometrically similar floating bodies across fluids. It enabled naval architects to predict, from a study of a much less expensive and smaller model, the resistance to motion and the power required to move a full-size ship. The work in the tank led Froude to design a model-cutting machine, dynamometers and machinery for the accurate ruling of graph paper. Froude's work, and later that of his son, was prodigious and covered many fields of ship design, including powering, propulsion, rolling, steering and stability. In only six years he had stamped his academic authority on the new science of hydrodynamics, served on many national committees and corresponded with fellow researchers throughout the world. His health suffered and he sailed for South Africa to recuperate, but he contracted dysentery and died at Simonstown. He will be remembered for all time as one of the greatest "fathers" of naval architecture.
    [br]
    Principal Honours and Distinctions
    FRS. Honorary LLD Glasgow University.
    Bibliography
    1955, The Papers of William Froude, London: Institution of Naval Architects (the Institution also published a memoir by Sir Westcott Abell and an evaluation of his work by Dr R.W.L. Gawn of the Royal Corps of Naval Constructors; this volume reprints all Froude's papers from the Institution of Naval Architects and other sources as diverse as the British Association, the Royal Society of Edinburgh and the Institution of Civil Engineers.
    Further Reading
    A.T.Crichton, 1990, "William and Robert Edmund Froude and the evolution of the ship model experimental tank", Transactions of the Newcomen Society 61:33–49.
    FMW

    Biographical history of technology > Froude, William

  • 14 discount

    1. сущ.
    1)
    а) торг. скидка (с цены), ценовая скидка (денежная сумма или процент, на который поставщик снижает стандартную цену товара или услуги; напр., снижение стандартной цены товара в рамках кампании по стимулированию сбыта или снижение прейскурантной цены в качестве вознаграждения за быстрый или наличный платеж, за покупку в большом количестве и т. п.; также снижение стандартного тарифа на услуги для клиентов, удовлетворяющих определенным требованиям, напр., уменьшение величины страховой премии в связи с особенностями данного риска, отсутствием аварий или других страховых случаев в течение определенного времени, либо уменьшение стоимости туристической путевки при приобретении общей путевки для группы лиц и т. п.)

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    to ask for a discount — просить [требовать\] скидку, обращаться за скидкой

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    Find out if you are entitled to a discount. — Выясните, имеете ли вы право на скидку.

    to lose a discount — терять скидку, терять право на скидку

    This means that you can make 1 claim in any year or 2 claims in any 3-year period, and you won't lose the discount earned for your previous years of safe driving. — Это означает, что вы можете предъявить одно требование в течение любого года или два требования в течение любого трехлетнего периода, и вы не потеряете скидку, заработанную за предыдущие года безопасного вождения.

    To find the sale price of the item, you calculate the discount and subtract the discount from the original price.

    to reduce/to increase discount — уменьшать/увеличивать скидку

    ThyssenKrupp Nirosta reduces cash discount.

    Under the Local Government Act 2003, all District Councils have been allowed to reduce their Council Tax discount on second homes from 50% to 10%.

    American Airlines also has increased its discount from 21 percent to 22 percent on all domestic fares and international full fares.

    They've increased the tax discount on the house.

    Syn:
    rebate 1. 1), reduction 1. 2) б)
    Ant:
    See:
    advertising discount, aggregated discount, bulk discount а), bulk purchase discount, cash discount, chain discount, commercial discount, cumulative discount, deep discount 2) а), deferred discount, discount allowed, discount earned, discount for cash, discount for cash payment, discount for early payment, discount for paying cash, discount for prompt payment, discount for quantity, discount for quantity purchases, discount from price, discount on price, discount received, discounts lost, early payment discount, functional discount, group discount 1) а), insurance discount, insurance premium discount, invoice discount 1) а), long discount, lost discounts, loyalty discount, net name discount, noncumulative discount, off-invoice discount, patronage discount, premium discount, prepayment discount, price discount а), prompt payment discount, purchase discount, quantity discount, quantity purchase discount, renewal discount, retail discount, retro discount, retrodiscount, retrospective discount, sales discount, series discount 1) а), short discount, special discount, staff discount, trade discount, trade-in discount, unearned discount а), volume discount, wholesale discount, amount of discount, discount amount а), discount broker а), discount brokerage, discount card, discount chain, discount coupon, discount drugstore, discount fare, discount goods, discount house 2) а), discount loss, discount market 2) а), discount merchandiser, discount period 1) а), discount policy 1) а), discount price, discount pricing, discount retailer, discount retailing, discount sale, discount scale, discount series, discount schedule, discount store, discount supermarket, discount table, discount terms, percentage of discount, scale of discounts, table of discounts, allowance 1. 3) discounted price а), discounted goods, premium price а), trade credit, EOM, ROG, discounter б), discountable 2) б), regular price, list price, off-price product, at a discount 1) а) IDIOM: five-finger discount
    б) фин., бирж. дисконт (сумма, на которую номинал или цена погашения ценной бумаги больше цены ее первоначального размещения или текущей рыночной цены)

    ATTRIBUTES:

    accrued 2), amortizable 2) б)

    deep discount — глубокий дисконт, значительный дисконт*

    COMBS:

    discount in the amount of— дисконт в сумме

    discount of $125, $125 discount — дисконт в размере 125 долл.

    As a result, X treats the loan as having original issue discount in the amount of $130000.

    10% discount, discount of 10% — дисконт в размере 10%, десятипроцентный дисконт

    For example, if a $1000 par bond was bought at a discount of $900, at maturity there would be a $100 gain.

    a discount of 10 to 40 percent — дисконт (в размере) от 10% до 40%

    a discount (of) between 10% and 20% — скидка (в размере) от 10% до 20%, скидка между 10% и 20%

    discount on [below, to, off, from\] — дисконт к (цене, номиналу), дисконт с [от\] (цены, номинала)

    Coupons are sold at a discount to maturity value.

    The Company amortizes any discount or premium as part of interest expense on the related debt using the effective interest method.

    Although the issuer will calculate original issue discount, if any, based on its determination of the accrual periods, a bondholder may, subject to some restrictions, elect other accrual periods.

    All taxable discount securities, including Corporate and Government Bonds, Federal STRIPs, Eurobonds, and Taxable Municipal securities.

    Ant:
    See:
    в) фин., банк. дисконт, скидка (разница между номиналом векселя и суммой, получаемой векселедержателем при учете векселя до наступления срока его погашения)
    See:
    г) фин., бирж. дисконт, скидка (отклонение в меньшую сторону от официального курса валюты, т. е. ситуация, когда цена одной валюты занижена по отношению к цене другой валюты, напр., франк может продаваться со скидкой к фунту)
    д) фин., банк. дисконт (разница между базовой согласованной суммой кредита и суммой, фактически получаемой заемщиком; в обычных дисконтных кредитах соответствует величине процентов, подлежащих уплате по кредиту; в некоторых кредитах из базовой суммы кредита могут вычитаться дисконтные пункты или другие единовременные вознаграждения и комиссионные, причитающиеся кредитору)
    See:
    е) фин. дисконт, скидка (при оценке стоимости предприятия или крупных пакетов акций: разница, на которую фактически согласованная цена предприятия/пакета акций меньше базовой рыночной цены; такой дисконт может использоваться в качестве компенсации за узость вторичного рынка для акций, недостаточный размер продаваемого пакета акций для приобретения контроля за предприятием и т. п.)
    See:
    ж) фин. скидка, дисконт (в самом общем смысле: сумма, на которую уменьшена базовая стоимость или другая базовая величина)
    Ant:
    See:
    2) банк., фин. учет, операция по учету [по дисконту\] (операция, в ходе которой банк или другое финансовое учреждение выкупает вексель или иное долговое обязательство у его держателя по цене, равной номиналу долгового обязательства за вычетом вознаграждения за оставшийся до погашения срок, напр., вексель с номиналом в 100 долл. может продаваться за 90 долл.; впоследствии банк взыскивает полную номинальную стоимость долгового обязательства с лица, выписавшего это долговое обязательство)
    Syn:
    See:
    3) фин. дисконтирование (определение текущей стоимости актива или текущей стоимости будущих потоков доходов и расходов)
    Syn:
    See:
    4)
    а) торг. процент скидки (величина скидки, выраженная в процентах к цене)
    Syn:
    б) фин. учетная ставка; ставка дисконта [дисконтирования\]
    Syn:
    discount rate 1) а), 1) а), 2) а)
    See:
    2. гл.
    1) торг. предоставлять [делать\] скидку, снижать цену (уменьшать обычную прейскурантную цену для покупателя, приобретающего значительное количество товара, рассчитывающегося наличными и т. п.); продавать со скидкой (уценивать товары, уменьшать цену продаваемых товаров)

    The shop discounted goods. — Магазин сделал скидку на товары.

    to discount from [off\] price — сделать скидку с цены

    to discount (by) 10% — делать скидку в размере 10%

    Companies discount their goods by 10%-75% only to sell more volume. — Компании предоставляют скидку на свои товары в размере 10-75% [компании снижают цену своих товаров на 10-75%\] только для того, чтобы увеличить объем продаж.

    If an item has not sold within two weeks the store discounts the item by 25% for the third week, 50% for the fourth week, and 75% for the fifth week. — Если предмет не продается в течении двух недель, то в течение третьей недели предмет предлагается со скидкой в 25%, в течение четвертой — со скидкой 50%, а в течение пятой — со скидкой 75%.

    All items were discounted about 20% from the suggested list prices. — Цена всех товаров была снижена на 20% по сравнению с рекомендованной прейскурантной ценой.

    The company discounted prices on its products. — Компания сделала скидку с цены на свои товары.

    United discounts the fare by 50%. — "Юнайтед" делает скидку с тарифа в размере 50%.

    The one-way fares are now discounted 15% off regular fares. — Стоимость проезда в один конец в настоящее время снижена на 15% по сравнению с обычными тарифами.

    This interest rate is discounted from the published bank standard variable rate for an agreed period from the start of the mortgage. — Эта процентная ставка снижена по сравнению с опубликованной стандартной плавающей процентной ставкой банка на оговоренный период, считая от начала действия ипотечного кредита.

    discounted mortgageипотека с дисконтом*, дисконтная ипотека*

    discounted period — период скидки [скидок\]*, период действия скидки*

    discounted price — цена со скидкой [с дисконтом\], дисконтная цена

    See:
    2) фин., банк. учитывать
    а) (приобретать векселя или счета-фактуры по цене ниже их номинала, т. е. с дисконтом, с целью последующего взыскания суммы долга с должника)

    to discount at the rate of 10% — учитывать по ставке 10%

    In the same way, circumstances often forced discount houses themselves to discount fine trade bills at the rate for fine bank bills. — Точно также, обстоятельства часто вынуждают сами дисконтные дома учитывать первоклассные торговые векселя по ставке, установленной для первоклассных банковских векселей.

    The Federal Reserve was given the right to discount “eligible paper” for member banks, that is lend money to the banks on the basis of the commercial paper arising from loan transactions with their customers. — Федеральной резервной системе было предоставлено право учитывать "приемлемые бумаги" для банков-членов, т. е. давать банкам деньги взаймы на базе коммерческих бумаг, возникающих в связи с кредитными операциями с их клиентами.

    б) (продавать векселя или счета-фактуры по цене ниже их номинала специализированному финансовому учреждению)

    to discount the note at 10% — учитывать долговое обязательство под 10%

    The company discounted the note at a bank at 10%. — Компания учла долговое обязательство в банке под 10%.

    If the vendor receives a note, he may discount it at the bank. — Если торговец получает простой вексель, он может учесть его в банке.

    to get a bill discounted — учесть вексель, произвести учет векселя

    See:
    3) фин., банк. предоставлять дисконтный заем* (получать проценты вперед при даче денег взаймы, т. е. выдавать заемщику не полную оговоренную сумму кредита, а ее часть, оставшуюся после вычета определенного дисконта, и взамен сокращать или аннулировать процентную ставку на весь или часть срока кредита; употребляется всегда с дополнением в виде названия кредита)

    to discount the loan — предоставлять дисконтный заем, делать заем дисконтным

    Negotiate the terms of the loan ( amount, interest rates) first and then lender discounts the loan by charging a fee which will be deducted from the loan amount before being dispersed to the borrower. — Договоритесь об условиях кредитования (сумма, процентные ставки) и потом кредитор сделает заем дисконтным путем взимания платы, которая будет вычтена из суммы займа перед выдачей заемщику.

    See:

    to discount at a rate of 10% — дисконтировать по ставке 10%

    Discount future cash flows to the present using the firm's cost of capital. — Приведите будущие денежные потоки к текущей стоимости, используя стоимость капитала фирмы.

    To adjust for the time value of money, we discounted future costs to present value. — Чтобы осуществить корректировку на временную стоимость денег, мы привели будущие затраты к текущей стоимости.

    We discount future cash flows by an interest rate that has been adjusted for risk. — Мы дисконтируем будущие денежные потоки, используя процентную ставку, скорректированную на риск.

    The taxpayer must continue to discount the unpaid losses attributable to proportional reinsurance from pre-1988 accident years using the discount factors that were used in determining tax reserves for the 1987 tax year. — Налогоплательщик должен продолжать дисконтировать неоплаченные убытки, относящиеся к пропорциональному перестрахованию за годы убытка, предшествующие 1988 г., используя коэффициенты дисконтирования, которые применялись при определении налоговых резервов на 1987 налоговый год.

    When comparing projects with different risk levels, it is best to discount each project's cash flows at its own discount rate and then compare the NPVs. — При сравнении проектов с разным уровнем риска, лучше всего произвести дисконтирование [продисконтировать\] денежные потоки каждого проекта по своей собственной ставке дисконтирования и затем сравнить чистую приведенную стоимость.

    discounted cash flow — дисконтированный [приведенный\] денежный поток

    discounted payback period — дисконтированный срок [период\] окупаемости

    See:
    5) общ. не принимать в расчет, игнорировать, пропускать, опускать; относиться скептически, не принимать на веру, сомневаться в правдивости

    to discount smb's opinion — игнорировать чье-л. мнение

    They discount my opinion. — Они не принимают в расчет мое мнение.

    We had already discounted the theory that they were involved. — Мы уже оставили идею об их причастности.

    By stressing one factor, each theory discounts the others. — Выделяя один фактор, каждая теория оставляет без внимания остальные.

    Democratic theory discounts the notion that allocation of scarce resources is the result of natural forces. — Демократическая теория игнорирует представление о том, что распределение редких ресурсов является результатом действия естественных сил.

    Knowing his political bias they discounted most of his story. — Зная о его политических пристрастиях, они сомневались в правдивости большей части его истории.

    Many people discount the value of statistical analysis. — Многие люди недооценивают статистический анализ.

    6) бирж. учитывать* (обычно используется в биржевом контексте, указывая на то, что плохие или хорошие новости о компании-эмитенте, отдельной отрасли, экономике в целом либо ожидания получения таких новостей учитываются участниками рынка при определении курсов ценных бумаг, вызывая соответственно понижение или повышение курсов)

    Many traders don't realize the news they hear and read has, in many cases, already been discounted by the market. — Многие трейдеры не осознают, что новости, о которых они услышали или прочитали, уже были учтены рынком.

    Technology stocks discounted a lot of bad news from abroad. — Акции технологических компаний отреагировали на обилие плохих новостей из-за границы.

    The bear market ends when at least most of the bad news is finally discounted by the market. — "Медвежий" рынок заканчивается, когда, по крайней мере, большая часть из плохих новостей наконец учитывается рынком.

    In the United States, the stock market double discounts expected inflation, first through long term bond yields and second through relative stock prices. — В Соединенных Штатах, фондовый рынок дважды учитывает ожидаемую инфляцию, во-первых, в доходности долгосрочных облигаций, а во-вторых, в ценах на соответствующие акции.

    These stock prices are discounting anticipated massive increases in profits for the S&P 500 companies in the future. — Цены акций учитывают ожидаемый в будущем массовый рост прибылей компаний, включаемых в расчет индекса "Стандард энд Пурз 500".

    Today’s prices are discounting all future events, not only today’s news. — Сегодняшние цены учитывают все будущие события, а не только сегодняшние новости.

    See:

    * * *
    discount (Dis; Disct) 1) дисконт, скидка: разница между ценой эмиссии ценной бумаги или кредита (номиналом или ценой погашения) и ее текущей рыночной ценой или разница между наличным и срочным валютными курсами; 2) учет векселей: операция купли-продажи векселей по номиналу минус вознаграждение за оставшийся до погашения срок (напр., вексель с номиналом в 100 долл. продается за 90 долл.); 3) скидка с цены товара (или возврат, напр., в качестве вознаграждения за быстрый или наличный платеж); см. cash discount; 4) учет информации об определенном событии в движении цен, ставок, в т. ч. до его наступления; 5) соотношение между двумя валютами; напр., франк может продаваться со скидкой к фунту; 6) определить текущую стоимость актива, который имеет определенную стоимость на определенную дату в будущем.
    * * *
    вычет (процентов); дисконт; скидка; учет (векселя), учетный процент
    . Относится к цене продажи облигации. Цена ниже номинальной стоимости. См. также Premium (премия) . (1) The amount a price would be reduced to purchase a commodity of lesser grade; (2) sometimes used to refer to the price differences between futures of different delivery months, as in the phrase "July is trading at a discount to May," indicating that the price of the July future is lower than that of May; (3) applied to cash grain prices that are below the futures price. Словарь экономических терминов .
    * * *
    особое условие договора купли-продажи, определяющее размер снижения (уменьшения) исходной (базисной) цены сделки
    -----
    Финансы/Кредит/Валюта
    1. учет векселя
    2. процент, взимаемый банками при учете векселей
    3. скидка с цены валюты в валютных сделках

    Англо-русский экономический словарь > discount

  • 15 currency

    1) (денежное) обращение
    2) деньги (обычно наличные деньги: монеты, банкноты); валюта

    Англо-русский словарь по экономике и финансам > currency

  • 16 Buddle, John

    [br]
    b. 15 November 1773 Kyloe, Northumberland, England
    d. 10 October 1843 Wallsend, Northumberland, England
    [br]
    English colliery inspector, manager and agent.
    [br]
    Buddle was educated by his father, a former schoolteacher who was from 1781 the first inspector and manager of the new Wallsend colliery. When his father died in 1806, John Buddle assumed full responsibility at the Wallsend colliery, and he remained as inspector and manager there until 1819, when he was appointed as colliery agent to the third Marquis of Londonderry. In this position, besides managing colliery business, he acted as an entrepreneur, gaining political influence and organizing colliery owners into fixing prices; Buddle and Londonderry were also responsible for the building of Seaham harbour. Buddle became known as the "King of the Coal Trade", gaining influence throughout the important Northumberland and Durham coalfield.
    Buddle's principal contribution to mining technology was with regard to the improvement of both safety standards and productivity. In 1807 he introduced a steam-driven air pump which extracted air from the top of the upcast shaft. Two years later, he drew up plans which divided the coalface into compartments; this enabled nearly the whole seam to be exploited. The system of compound ventilation greatly reduced the danger of explosions: the incoming air was divided into two currents, and since each current passed through only half the underground area, the air was less heavily contaminated with gas.
    In 1813 Buddle presented an important paper on his method for mine ventilation to the Sunderland Society for Preventing Accidents in Coal-mines, which had been established in that year following a major colliery explosion. He emphasized the need for satisfactory underground lighting, which influenced the development of safety-lamps, and assisted actively in the experiments with Humphrey Davy's lamp which he was one of the first mine managers to introduce. Another mine accident, a sudden flood, prompted him to maintain a systematic record of mine-workings which ultimately resulted in the establishment of the Mining Record Office.
    [br]
    Bibliography
    1838, Transactions of the Natural History Society of Northumberland 11, pp. 309–36 (Buddle's paper on keeping records of underground workings).
    Further Reading
    R.L.Galloway, 1882, A History of Coalmining in Great Britain, London (deals extensively with Buddle's underground devices).
    R.W.Sturgess, 1975, Aristocrat in Business: The Third Marquis of Londonderry as
    Coalowner and Portbuilder, Durham: Durham County Local History Society (concentrates on Buddle's work after 1819).
    C.E.Hiskey, 1978, John Buddle 1773–1843, Agent and Entrepreneur in the Northeast
    Coal Trade, unpublished MLitt thesis, Durham University (a very detailed study).
    WK

    Biographical history of technology > Buddle, John

  • 17 Cross, Charles Frederick

    [br]
    b. 11 December 1855 Brentwood, Middlesex, England
    d. 15 April 1935 Hove, England
    [br]
    English chemist who contributed to the development of viscose rayon from cellulose.
    [br]
    Cross was educated at the universities of London, Zurich and Manchester. It was at Owens College, Manchester, that Cross first met E.J. Bevan and where these two first worked together on the nature of cellulose. After gaining some industrial experience, Cross joined Bevan to set up a partnership in London as analytical and consulting chemists, specializing in the chemistry and technology of cellulose and lignin. They were at the Jodrell laboratory, Kew Gardens, for a time and then set up their own laboratory at Station Avenue, Kew Gardens. In 1888, the first edition of their joint publication A Textbook of Paper-making, appeared. It went into several editions and became the standard reference and textbook on the subject. The long introductory chapter is a discourse on cellulose.
    In 1892, Cross, Bevan and Clayton Beadle took out their historic patent on the solution and regeneration of cellulose. The modern artificial-fibre industry stems from this patent. They made their discovery at New Court, Carey Street, London: wood-pulp (or another cheap form of cellulose) was dissolved in a mixture of carbon disulphide and aqueous alkali to produce sodium xanthate. After maturing, it was squirted through fine holes into dilute acid, which set the liquid to give spinnable fibres of "viscose". However, it was many years before the process became a commercial operation, partly because the use of a natural raw material such as wood involved variations in chemical content and each batch might react differently. At first it was thought that viscose might be suitable for incandescent lamp filaments, and C.H.Stearn, a collaborator with Cross, continued to investigate this possibility, but the sheen on the fibres suggested that viscose might be made into artificial silk. The original Viscose Spinning Syndicate was formed in 1894 and a place was rented at Erith in Kent. However, it was not until some skeins of artificial silk (a term to which Cross himself objected) were displayed in Paris that textile manufacturers began to take an interest in it. It was then that Courtaulds decided to investigate this new fibre, although it was not until 1904 that they bought the English patents and developed the first artificial silk that was later called "rayon". Cross was also concerned with the development of viscose films and of cellulose acetate, which became a rival to rayon in the form of "Celanese". He retained his interest in the paper industry and in publishing, in 1895 again collaborating with Bevan and publishing a book on Cellulose and other technical articles. He was a cultured man and a good musician. He was elected a Fellow of the Royal Society in 1917.
    [br]
    Principal Honours and Distinctions
    FRS 1917.
    Bibliography
    1888, with E.J.Bevan, A Text-book of Papermaking. 1892, British patent no. 8,700 (cellulose).
    Further Reading
    Obituary Notices of the Royal Society, 1935, London. Obituary, 1935, Journal of the Chemical Society 1,337. Chambers Concise Dictionary of Scientists, 1989, Cambridge.
    Edwin J.Beer, 1962–3, "The birth of viscose rayon", Transactions of the Newcomen Society 35 (an account of the problems of developing viscose rayon; Beer worked under Cross in the Kew laboratories).
    C.Singer (ed.), 1978, A History of Technology, Vol. VI, Oxford: Clarendon Press.
    RLH

    Biographical history of technology > Cross, Charles Frederick

  • 18 Paul, Lewis

    SUBJECT AREA: Textiles
    [br]
    d. April 1759 Brook Green, London, England
    [br]
    English inventor of hand carding machines and partner with Wyatt in early spinning machines.
    [br]
    Lewis Paul, apparently of French Huguenot extraction, was quite young when his father died. His father was Physician to Lord Shaftsbury, who acted as Lewis Paul's guardian. In 1728 Paul made a runaway match with a widow and apparently came into her property when she died a year later. He must have subsequently remarried. In 1732 he invented a pinking machine for making the edges of shrouds out of which he derived some profit.
    Why Paul went to Birmingham is unknown, but he helped finance some of Wyatt's earlier inventions. Judging by the later patents taken out by Paul, it is probable that he was the one interested in spinning, turning to Wyatt for help in the construction of his spinning machine because he had no mechanical skills. The two men may have been involved in this as early as 1733, although it is more likely that they began this work in 1735. Wyatt went to London to construct a model and in 1736 helped to apply for a patent, which was granted in 1738 in the name of Paul. The patent shows that Paul and Wyatt had a number of different ways of spinning in mind, but contains no drawings of the machines. In one part there is a description of sets of rollers to draw the cotton out more finely that could have been similar to those later used by Richard Arkwright. However, it would seem that Paul and Wyatt followed the other main method described, which might be called spindle drafting, where the fibres are drawn out between the nip of a pair of rollers and the tip of the spindle; this method is unsatisfactory for continuous spinning and results in an uneven yarn.
    The spinning venture was supported by Thomas Warren, a well-known Birmingham printer, Edward Cave of Gentleman's Magazine, Dr Robert James of fever-powder celebrity, Mrs Desmoulins, and others. Dr Samuel Johnson also took much interest. In 1741 a mill powered by two asses was equipped at the Upper Priory, Birmingham, with, machinery for spinning cotton being constructed by Wyatt. Licences for using the invention were sold to other people including Edward Cave, who established a mill at Northampton, so the enterprise seemed to have great promise. A spinning machine must be supplied with fibres suitably prepared, so carding machines had to be developed. Work was in hand on one in 1740 and in 1748 Paul took out another patent for two types of carding device, possibly prompted by the patent taken out by Daniel Bourn. Both of Paul's devices were worked by hand and the carded fibres were laid onto a strip of paper. The paper and fibres were then rolled up and placed in the spinning machine. In 1757 John Dyer wrote a poem entitled The Fleece, which describes a circular spinning machine of the type depicted in a patent taken out by Paul in 1758. Drawings in this patent show that this method of spinning was different from Arkwright's. Paul endeavoured to have the machine introduced into the Foundling Hospital, but his death in early 1759 stopped all further development. He was buried at Paddington on 30 April that year.
    [br]
    Bibliography
    1738, British patent no. 562 (spinning machine). 1748, British patent no. 636 (carding machine).
    1758, British patent no. 724 (circular spinning machine).
    Further Reading
    G.J.French, 1859, The Life and Times of Samuel Crompton, London, App. This should be read in conjunction with R.L.Hills, 1970, Power in the Industrial Revolution, Manchester, which shows that the roller drafting system on Paul's later spinning machine worked on the wrong principles.
    A.P.Wadsworth and J.de L.Mann, 1931, The Cotton Trade and Industrial Lancashire, 1600–1780, Manchester (provides good coverage of the partnership of Paul and Wyatt and the early mills).
    E.Baines, 1835, History of the Cotton Manufacture in Great Britain, London (this publication must be mentioned, but is now out of date).
    A.Seymour-Jones, 1921, "The invention of roller drawing in cotton spinning", Transactions of the Newcomen Society 1 (a more modern account).
    RLH

    Biographical history of technology > Paul, Lewis

  • 19 валюта

    жен.;
    фин. экон. currency английская валютаsterling курс валюты твердая валюта иностранная валюта золотая валюта
    валют|а - ж. (денежная система) currency;
    бумажная ~ paper currency;
    блокированная ~ blocked currency;
    замкнутая ~ inconvertible currency;
    иностранная ~ foreign currency;
    конвертируемая ~ convertible/hard currency;
    международная ~ international currency;
    национальная ~ national currency;
    неконвертируемая ~ inconvertible/soft currency;
    неустойчивая ~ unstable currency;
    ~, привязанная к доллару currency pegged to the dollar;
    резервная ~ reserve currency;
    свободно конвертируемая ~ freely convertible currency;
    твёрдая ~ hard currency;
    устойчивая ~ stable currency;
    ~ векселя currency of a bill;
    ~ контракта currency of contract;
    ~ кредита currency of credit;
    ~ платежа currency of payment;
    ~ перевода currency of a transfer;
    ~ расчёта transactions currency, clearing currency;
    ~ сделки bargain currency;
    ~ страны-импортёра, экспортёра importer`s, exporter`s currency;
    ~ счёта currency of an account;
    ~ цены currency of price;
    ~ный currency attr. ;
    ~ная котировка quotation currency;
    ~ная операция currency transaction;
    ~ный курс rate of exchange, exchange;
    ~ный рынок exchange market, currency market.

    Большой англо-русский и русско-английский словарь > валюта

  • 20 IPT

    1) Компьютерная техника: Information Processing Technologies
    2) Медицина: Instant Pressure Type
    4) Религия: Intercessory Prayer Team
    5) Юридический термин: Inmate Population Tracking, International Protection Teams
    7) Incentive Physical Training (мотивированная физподготовка, физуха) (в морской пехоте США)
    8) Телекоммуникации: Internet Protocol Telephony
    10) Физика: Inductive Power Transfer
    11) Электроника: Ideal Process Time
    12) Нефть: Institute of Petroleum Technology, Нефтяной технологический институт (Великобритания; Institution of Petroleum Technologists)
    13) Иммунология: Insulin Potentiation Therapy
    14) Связь: IP Telephony
    15) Деловая лексика: Integrated Processes And Technologies
    16) Глоссарий компании Сахалин Энерджи: Island Project Team
    17) Образование: Idea Proficiency Tests
    19) Программирование: Ignite Paper Tape
    20) Контроль качества: initial product test
    21) Сахалин Р: Integrated Project Team
    22) Химическое оружие: Integrated Process Team, Integration Process Team
    23) Авиационная медицина: initial pilot training
    24) Электротехника: interphase transformer
    26) Аэропорты: Williamsport, Pennsylvania USA
    28) Корпоративное управление: interested party transactions

    Универсальный англо-русский словарь > IPT

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