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101 development
development [dɪˈveləpmənt]1. nouna. ( = act of developing) développement mc. ( = building complex) an industrial development une zone industrielle2. compounds━━━━━━━━━━━━━━━━━✎ développement has a double p and an extra e.* * *[dɪ'veləpmənt] 1.1) ( creation) ( of product) mise f au point; (of housing, industry) création f2) (evolution, growth) développement m3) ( of land) mise f en valeur; (of site, city centre etc) aménagement m4) ( land developed)housing development — ensemble m d'habitation; ( individual houses) lotissement m
commercial development — (ensemble m de) commerces et bureaux à bâtir
5) ( innovation) progrès mmajor developments — des découvertes fpl majeures (in dans le domaine de)
6) ( event) changement m7) (of idea, theme) développement m2. -
102 Corporation
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103 cost
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104 activity
n1) активность2) деятельность, работа3) pl действия, деятельность (в какой-л. области)
- advertising activity
- agent's activities
- air freight activity
- ancillary activity
- business activity
- charitable activities
- civil engineering activity
- clean-up activities
- commercial activities
- communication activity
- competitive activity
- construction activity
- creative activity
- criminal activities
- defence activity
- defence industry activity
- demand stimulation activities
- development activity
- diversified activities
- domestic activity
- drilling activity
- economic activity
- economical activity
- environmental activity
- export-related activities
- financial activities
- foreign trade activity
- freight traffic activity
- home construction activity
- integration activities
- investment activity
- joint activity
- labour activity
- labour-intensive activity
- lawful activity
- legal activity
- legitimate activity
- leisure activity
- lending activities
- low economic activity
- management activity
- manned space activities
- manufacturing activity
- military activity
- military space activities
- nonproductive activity
- nuclear activity
- overall business activity
- practical activity
- primary activity
- priority activity
- procurement activities
- production activity
- productive activity
- promotional activity
- publicity activity
- quick yielding activities
- rationalization activity
- rental activities
- research activity
- research-and-development activity
- residual activity
- risky activity
- rural activities
- sales activity
- secondary activity
- service activities
- space commercial activities
- speculative activity
- surveillance activity
- trade activity
- trading activity
- vigorous activity
- activities of a commission
- coordinate activity
- direct activities
- engage in business activities
- expand activities
- facilitate activities
- resume activities
- spur business activities
- supervise activities
- suspend activitiesEnglish-russian dctionary of contemporary Economics > activity
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105 company
nкомпания; общество; фирма; предприятие
- affiliated company
- ailing company
- air company
- airline company
- alien company
- allied company
- appraisal company
- associated company
- assurance company
- bank holding company
- bloated company
- blue-chip company
- bogus company
- broker company
- bubble company
- building company
- cable company
- car rental company
- carrying company
- chartered company
- closed company
- closed-end company
- closed-end investment company
- commercial company
- commercial credit company
- commission company
- competitive company
- consulting company
- consumer finance company
- consumer-goods company
- controlled company
- controlling company
- credit card company
- customer-centric company
- daughter company
- dealer company
- defunct company
- designing company
- development company
- distributing company
- diversified company
- domestic company
- domestic road haulage company
- dormant company
- emerging company
- engineering company
- export company
- factoring company
- farming company
- finance company
- financially-troubled company
- financing company
- foreign company
- foreign trade company
- forwarding company
- front company
- general marketing company
- general trade company
- hire-purchase company
- holding company
- home company
- immediate holding company
- incorporated company
- independent appraisal company
- industrial company
- inland navigation company
- installment credit company
- insurance company
- international company
- investment company
- issuing company
- joint-stock company
- large company
- leading company
- leased company
- leasing company
- life assurance company
- life insurance company
- limited-liability company
- liner company
- listed company
- loss-making company
- low-liquid company
- mail-order company
- major company
- management company
- managing company
- manufacturing company
- marketing company
- medium-sized company
- mixed company
- mobile radiotelephone company
- mortgage company
- multi-industry company
- multinational company
- mutual insurance company
- national company
- nationalized company
- navigation company
- nominee company
- nonoperating company
- nonprofit-making company
- nonresident company
- ocean company
- offshore company
- oil company
- one-man company
- open-end company
- open-end investment company
- operating company
- overseas company
- packaging company
- packing company
- paging company
- parent company
- personal loan company
- predecessor company
- private company
- private limited company
- privatized company
- processing company
- producer company
- product company
- property company
- proprietary company
- public company
- public limited company
- public utility company
- purchasing company
- quoted company
- railway company
- real estate company
- realty company
- registered company
- reinsurance company
- rival company
- sales company
- sales finance company
- salvage company
- securities company
- separate company
- service company
- shell company
- shipping company
- short-line company
- sister company
- specialized company
- state company
- statutory company
- steamship company
- stevedoring company
- stock company
- subsidiary company
- sub-subsidiary company
- supplier company
- surety company
- target company
- trade company
- trading company
- transparent company
- transport company
- troubled company
- trucking company
- trust company
- trust and mortgage loan company
- turnaround company
- unlimited company
- unregistered company
- venture capital company
- vendor company
- warehouse company
- well-established company
- wild cat company
- absorb a company
- close down a company
- constitute a company
- create a company
- dissolve a company
- establish a company
- float a company
- form a company
- keep a company afloat
- liquidate a company
- promote a company
- register a company
- represent a company
- run a company
- sell out a company
- set up a company
- start a company
- tout a company
- turn around a company
- wind up a company
- wipe out a companyEnglish-russian dctionary of contemporary Economics > company
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106 cost
1. n1) цена; стоимость; себестоимость2) обыкн. pl расходы, издержки, затраты3) pl судебные издержки, судебные расходы
- absorbed costs
- accident costs
- acquisition cost
- actual cost
- actual costs
- actual manufacturing cost
- added cost
- additional cost
- adjusted historical cost
- administration costs
- administrative costs
- administrative and management costs
- administrative and operational services costs
- advertising costs
- after costs
- after-shipment costs
- aggregate costs
- agreed cost
- airfreight cost
- allocable costs
- allowable costs
- alternative costs
- amortization costs
- amortized cost
- ancillary costs
- annual costs
- anticipated costs
- applied cost
- arbitration costs
- assembly costs
- assessed cost
- average cost
- average costs
- average cost per unit
- average variable costs
- avoidable costs
- back-order costs
- basic cost
- billed cost
- book cost
- borrowing cost
- breakage cost
- break-even costs
- budget costs
- budgeted cost
- budgeted costs
- budgeted operating costs
- building costs
- burden costs
- calculated costs
- capacity costs
- capital costs
- capital floatation costs
- carriage costs
- carrying cost
- carrying costs
- centrally-managed costs
- changeover costs
- cleaning costs
- clerical costs
- closing costs
- collection costs
- combined cost
- commercial cost
- commercial costs
- committed costs
- common staff costs
- comparative costs
- competitive costs
- competitive marginal costs
- complaint costs
- conditional cost
- consequential costs
- considerable costs
- constant cost
- constant costs
- construction costs
- contract cost
- contractual costs
- controllable costs
- court costs
- crane costs
- credit costs
- cumulative costs
- current cost
- current costs
- current outlay costs
- current standard cost
- cycle inventory costs
- debt-servicing costs
- declining costs
- decorating costs
- decreasing costs
- defect costs
- defence costs
- deferred costs
- deficiency costs
- degressive costs
- delivery costs
- departmental costs
- depleted cost
- depreciable cost
- depreciated cost
- depreciated replacement cost
- depreciation costs
- designing costs
- deterioration costs
- development costs
- differential costs
- direct costs
- direct labour costs
- direct operating costs
- direct payroll costs
- discretionary fixed costs
- dismantling costs
- distribution costs
- distribution marketing cost
- domestic resource costs
- double-weighted borrowing cost
- downtime costs
- economic costs
- eligible costs
- engineering costs
- entry cost
- environmental costs
- equipment capital costs
- erection costs
- escalating costs
- escapable costs
- estimated cost
- estimated costs
- evaluation cost
- excess cost
- excess costs
- excessive costs
- exhibition costs
- exploration costs
- extra costs
- extra and extraordinary costs
- extraordinary costs
- fabrication cost
- factor cost
- factor costs
- factory cost
- factory costs
- factory overhead costs
- failure costs
- farm production costs
- farmer's cost
- farming costs
- feed costs
- fertilizing costs
- final cost
- financial costs
- financing costs
- first cost
- fixed costs
- fixed capital replacement costs
- flat cost
- floatation costs
- food costs
- foreign housing costs
- formation costs
- freight costs
- fuel costs
- full cost
- full costs
- funding cost
- general costs
- general running costs
- government-controlled production costs
- guarantee costs
- harvesting costs
- haul costs
- haulage costs
- heavy costs
- hedging cost
- hidden costs
- high cost
- hiring costs
- historical cost
- hospitality costs
- hotel costs
- hourly costs
- idle capacity costs
- idle time costs
- implicit costs
- implied interest costs
- imputed costs
- incidental costs
- increasing costs
- incremental costs
- incremental cost of capital
- incremental costs of circulation
- incremental costs of service
- incurred costs
- indirect costs
- indirect labour costs
- indirect manufacturing costs
- indirect payroll costs
- indirect production costs
- individual costs
- industrial costs
- industry-average costs
- initial cost
- inland freight cost
- inspection costs
- installation costs
- insurance costs
- insured cost
- intangible costs
- integrated cost
- interest costs
- inventoriable costs
- inventory cost
- inventory costs
- inventory acquisition costs
- inventory possession costs
- investigation costs
- investment costs
- invoiced cost
- issuing cost
- joint cost
- labour costs
- landed cost
- launching cost
- launching costs
- layoff costs
- legal costs
- legitimate costs
- life cycle costs
- life repair cost
- liquidation cost
- litigation costs
- living costs
- loading costs
- loan cost
- long-run average costs
- long-run marginal costs
- low costs
- low operating costs
- lump-sum costs
- machining cost
- maintenance costs
- maintenance-and-repair costs
- management costs
- man-power cost
- man-power costs
- manufacturing cost
- manufacturing costs
- manufacturing overhead costs
- marginal costs
- marginal-factor costs
- maritime costs
- marketing costs
- material costs
- material handling costs
- merchandising costs
- miscellaneous costs
- mixed cost
- mounting costs
- net cost
- nominal cost
- nonmanufacturing costs
- obsolescence costs
- offering cost
- one-off costs
- one-off costs of acquiring land, buildings and equipment
- one-shot costs
- operating costs
- operation costs
- operational costs
- opportunity costs
- order cost
- ordering cost
- order initiation cost
- ordinary costs
- organization costs
- organizational costs
- original cost
- original cost of the assets
- original cost of capital
- out-of-pocket costs
- overall cost
- overall costs
- overhead costs
- overtime costs
- own costs
- owning costs
- packaging cost
- packing cost
- past costs
- past sunk costs
- payroll cost
- payroll costs
- penalty cost
- penalty costs
- period costs
- permissible costs
- personnel costs
- piece costs
- planned costs
- postponable costs
- predetermined costs
- prepaid costs
- preproduction costs
- prime cost
- processing costs
- procurement costs
- product cost
- production cost
- production costs
- product unit cost
- progress-generating costs
- progressive costs
- prohibitive costs
- project costs
- project development cost
- projected costs
- promotional costs
- protected costs
- publicity costs
- purchase costs
- purchasing costs
- pure costs of circulation
- quality costs
- quality-inspection costs
- real cost
- real costs
- recall costs
- reconstruction cost
- recoverable cost
- recurring costs
- reduction costs
- reimbursable cost
- relative cost
- relevant costs
- removal costs
- renewal cost
- reoperating costs
- reoperation costs
- reorder cost
- repair cost
- repair costs
- replacement cost
- replacement costs
- replacement cost at market rates
- replacement cost of borrowing
- replacement cost of capital assets
- replacement cost of equipment
- replacement depreciation cost
- replenishment cost
- reproduction cost
- reproduction costs
- research costs
- research and development costs
- reservation costs
- rework costs
- rising costs
- road maintenance costs
- running costs
- run-on costs
- salvage cost
- salvage costs
- scheduled costs
- scrap cost
- selling costs
- semi-variable costs
- service costs
- servicing costs
- setting-up costs
- set-up costs
- shadow costs
- shelter costs
- shipping costs
- shortage costs
- single cost
- social costs
- social marginal costs
- social overhead costs
- sorting costs
- special costs
- specification costs
- spoilage costs
- staff costs
- stand costs
- standard cost
- standard costs
- standard direct labour costs
- standard direct materials cost
- standard factory overhead cost
- standing costs
- start-up costs
- stepped costs
- stocking cost
- stockout costs
- storage costs
- sunk costs
- supervision costs
- supplementary costs
- supplementary costs of circulation
- tangible costs
- target cost
- target costs
- taxable cost of shares
- tentative cost
- time-related cost
- total cost
- training cost
- training costs
- transaction costs
- transfer costs
- transhipment costs
- transport costs
- transportation costs
- travel costs
- travelling costs
- trim costs
- true cost
- true costs
- trust cost
- unamortized cost
- unavoidable costs
- underwriting cost
- unexpired costs
- unit cost
- unit costs
- unloading costs
- unrecovered cost
- unscheduled costs
- upkeep costs
- upward costs
- utility's costs
- variable costs
- variable capital costs
- wage costs
- war costs
- warehouse costs
- warehousing costs
- weighted average cost
- welfare costs
- wintering costs
- working cost
- working costs
- costs for bunker
- costs for storing
- costs of administration
- cost of appraisal
- cost of arbitration
- cost of borrowing
- cost of boxing
- cost of bunker
- cost of capital
- cost of capital deeping
- cost of carriage
- cost of carry
- cost of carrying inventory
- costs of circulation
- cost of civil engineering work
- cost of construction
- cost of a contract
- cost of credit
- cost of delivery
- cost of demonstration
- cost of discounting
- cost of disposal
- cost of education
- cost of equipment
- cost of equity capital
- cost of filing
- cost of financing
- cost of fixed capital
- cost of funds
- cost of goods
- cost of haulage
- cost of hotel accommodation
- costs of housing
- costs of idleness
- cost of installation
- cost of insurance
- costs of inventory
- cost of issue
- cost of labour
- cost of a licence
- cost of living
- cost of manpower
- cost of manufacture
- cost of manufactured goods
- cost of manufacturing
- costs of material
- costs of material inputs
- cost of money
- cost of obtaining funds
- costs of operations
- cost of an order
- cost of packaging
- cost of packing
- cost of postage
- costs of production
- cost of product sold
- cost of a project
- cost of publication
- cost of putting goods into a saleable condition
- cost of reclamation
- cost of reinsurance
- costs of reliability
- cost of renting
- cost of renting a trading post
- cost of repairs
- costs of routine maintenance
- cost of sales
- costs of sales
- cost of scrap
- cost of service
- cost of servicing
- costs of shipping
- cost of storage
- cost of a suit
- costs of supervision
- cost of tare
- costs of trackage
- costs of transportation
- cost of work
- cost per inquiry
- costs per unit
- above cost
- at cost
- at the cost of
- at extra cost
- below cost
- less costs
- minus costs
- next to cost
- under cost
- with costs
- without regard to cost
- exclusive of costs
- free of cost
- cost of market, whichever is lower
- cost plus percentage of cost
- absorb costs
- allocate costs
- assess the cost
- assess costs
- assume costs
- award costs against smb.
- bear costs
- calculate costs
- charge cost
- compute the cost
- cover the cost
- cover costs
- curb costs
- curtail costs
- cut down on costs
- cut production costs
- decrease the cost
- defray the costs
- determine the cost
- disregard costs
- distort the cost
- distribute costs
- entail costs
- estimate costs
- exceed the cost
- impose costs
- increase cost
- incur costs
- inflict economic and social costs
- involve costs
- itemize costs
- keep down costs
- meet the cost
- meet costs
- offset the cost
- offset the costs
- offset high interest costs
- overestimate production costs
- pay costs
- prune away costs
- push up costs
- recompense the cost
- recoup the cost
- recover costs
- reduce costs
- refund the cost
- revise the cost
- save costs
- sell at a cost
- share the cost
- slash costs
- split up the cost
- trim costs
- write off costs
- write off costs against revenues
- write off capital costs2. v1) стоить -
107 vehicle
сухопутное перевозочное средство (автомобиль, автобус, вагон, экипаж); средство передвижения; транспортное средство; средство доставки- vehicle anchor - vehicle capacity - vehicle company - vehicle group - vehicle hoist - vehicle landing craft - vehicle laws - vehicle manufacturing industry - vehicle mobility - vehicle operation - vehicle repair depot - vehicle reserve depot - vehicle shed - vehicle shipment - vehicle shipping card - vehicle sinkage - vehicle taxes - vehicle traction coefficient - vehicle upkeep operation - vehicle weapon - air-cushion vehicle - ACV - amphibious vehicle - annular jet air-cushion vehicle - annular jet ACV - emergency service vehicle - exempt vehicle - fire-fighting vehicle - horse vehicle - on-coming vehicle - outing vehicle - SUV - towing vehicle - toy motor vehicle - undertyred vehicle - unmanned vehicle - utility vehicle - war-surplus vehicle - water purification vehicle - wheeled air-cushion vehicle - wheeled ACV - wheeled military vehicle - winterized vehicle - wire-laying vehicle -
108 business
1. n дело, постоянное занятие, специальность2. n дело, работаbusiness hours — рабочие часы, часы работы
to get down to business — взяться за дело, взяться за работу
you call it pleasure, I call it business — вы называете это развлечением, я же считаю это работой
what is your business here? — зачем вы сюда пришли?; что вам здесь надо?
dispatch of business — разрешение дел; отправление функций
3. n повестка дняother business — разное, прочие вопросы
4. n дело, обязанность, долг, назначение; круг обязанностейwhat business is that of yours? — какое ваше дело?, что вы вмешиваетесь?
5. n торговля, коммерческая деятельность, бизнесbusiness failure — банкротство, крах
business depression — застой в торговле; экономическая депрессия; экономический кризис
to go into business — заняться торговлей, стать торговцем
to do business — заниматься коммерцией, быть коммерсантом
business week — "Бизнес уик"
6. n торговое дело, коммерческое предприятие, фирмаbanking business — банковское дело, банк
business problem — коммерческая задача; экономическая задача
despatch of business — разрешение дел; отправление функций
7. n торговая, коммерческая сделка8. n разг. дело, вопрос, случай9. n театр. игра, мимикаthis part has a good deal of comic business as played by him — он вносит комический элемент в исполнение этой роли
10. n театр. актёрские атрибуты, приспособления11. n театр. уст. отношения, связи12. n театр. уст. занятость; усердие13. n театр. амер. клиентура, покупатели; публика14. n театр. эвф. «серьёзное дело»«занятие», проституция
no monkey business! — без фокусов!, без глупостей!
business as usual — замалчивание трудностей или проблем;
crook business — тёмное дело, афера
Синонимический ряд:1. commercial (adj.) commercial; industrial; mercantile2. affair (noun) affair; affairs; concern; concerns; interest; lookout; matter; matters; occasions; palaver; palavers; shooting match; thing; things3. barter (noun) bargaining; barter; negotiation; traffic4. commerce (noun) commerce; custom; exchange; industry; job; livelihood; patronage; production; racket; sector; trade; transaction5. company (noun) company; corporation; enterprise; establishment; firm; house; operation; outfit; partnership; station; syndicate6. doodad (noun) dingus; dofunny; doodad; doohickey; gadget; gizmo; jigger; rigamajig; thingum; thingumajig; thingumbob; thingummy7. function (noun) duty; function; office; position; province; role8. occupation (noun) calling; craft; employment; line; occupation; profession; pursuit; specialty; venture; vocation; workАнтонимический ряд:hobby; inactivity; leisure; unemployment -
109 Fishing
Portugal's long coastline and seafaring tradition have made fishing an important economic activity. The country's main fishing ports and centers of commercial fish processing are Lisbon, Setúbal, Matosinhos, and Portimão. The most important of the 200 species of fish caught in adjacent waters are anchovy, sardines, mackerel, stickleback, and tunny. While most fish caught by Portuguese fishermen is consumed locally, sardines, canned in oil, are exported.During the Estado Novo, fishermen were organized into mixed employer-employee organizations called casas dos pescadores, but these were underfunded, and, because no attempt was made to modernize the industry, fishing stagnated. Cod fishing off Greenland and Newfoundland, at one time a major aspect of the Portuguese fishing industry, went into decline and has all but disappeared owing to the failure of Portugal to modernize its cod-fishing fleet and adopt modern fishing techniques. This has meant that Portugal has had to purchase foreign-caught cod to satisfy local demand for bacalhau (codfish), the country's national dish since the 15th century. -
110 World War II
(1939-1945)In the European phase of the war, neutral Portugal contributed more to the Allied victory than historians have acknowledged. Portugal experienced severe pressures to compromise her neutrality from both the Axis and Allied powers and, on several occasions, there were efforts to force Portugal to enter the war as a belligerent. Several factors lent Portugal importance as a neutral. This was especially the case during the period from the fall of France in June 1940 to the Allied invasion and reconquest of France from June to August 1944.In four respects, Portugal became briefly a modest strategic asset for the Allies and a war materiel supplier for both sides: the country's location in the southwesternmost corner of the largely German-occupied European continent; being a transport and communication terminus, observation post for spies, and crossroads between Europe, the Atlantic, the Americas, and Africa; Portugal's strategically located Atlantic islands, the Azores, Madeira, and Cape Verde archipelagos; and having important mines of wolfram or tungsten ore, crucial for the war industry for hardening steel.To maintain strict neutrality, the Estado Novo regime dominated by Antônio de Oliveira Salazar performed a delicate balancing act. Lisbon attempted to please and cater to the interests of both sets of belligerents, but only to the extent that the concessions granted would not threaten Portugal's security or its status as a neutral. On at least two occasions, Portugal's neutrality status was threatened. First, Germany briefly considered invading Portugal and Spain during 1940-41. A second occasion came in 1943 and 1944 as Great Britain, backed by the United States, pressured Portugal to grant war-related concessions that threatened Portugal's status of strict neutrality and would possibly bring Portugal into the war on the Allied side. Nazi Germany's plan ("Operation Felix") to invade the Iberian Peninsula from late 1940 into 1941 was never executed, but the Allies occupied and used several air and naval bases in Portugal's Azores Islands.The second major crisis for Portugal's neutrality came with increasing Allied pressures for concessions from the summer of 1943 to the summer of 1944. Led by Britain, Portugal's oldest ally, Portugal was pressured to grant access to air and naval bases in the Azores Islands. Such bases were necessary to assist the Allies in winning the Battle of the Atlantic, the naval war in which German U-boats continued to destroy Allied shipping. In October 1943, following tedious negotiations, British forces began to operate such bases and, in November 1944, American forces were allowed to enter the islands. Germany protested and made threats, but there was no German attack.Tensions rose again in the spring of 1944, when the Allies demanded that Lisbon cease exporting wolfram to Germany. Salazar grew agitated, considered resigning, and argued that Portugal had made a solemn promise to Germany that wolfram exports would be continued and that Portugal could not break its pledge. The Portuguese ambassador in London concluded that the shipping of wolfram to Germany was "the price of neutrality." Fearing that a still-dangerous Germany could still attack Portugal, Salazar ordered the banning of the mining, sale, and exports of wolfram not only to Germany but to the Allies as of 6 June 1944.Portugal did not enter the war as a belligerent, and its forces did not engage in combat, but some Portuguese experienced directly or indirectly the impact of fighting. Off Portugal or near her Atlantic islands, Portuguese naval personnel or commercial fishermen rescued at sea hundreds of victims of U-boat sinkings of Allied shipping in the Atlantic. German U-boats sank four or five Portuguese merchant vessels as well and, in 1944, a U-boat stopped, boarded, searched, and forced the evacuation of a Portuguese ocean liner, the Serpa Pinto, in mid-Atlantic. Filled with refugees, the liner was not sunk but several passengers lost their lives and the U-boat kidnapped two of the ship's passengers, Portuguese Americans of military age, and interned them in a prison camp. As for involvement in a theater of war, hundreds of inhabitants were killed and wounded in remote East Timor, a Portuguese colony near Indonesia, which was invaded, annexed, and ruled by Japanese forces between February 1942 and August 1945. In other incidents, scores of Allied military planes, out of fuel or damaged in air combat, crashed or were forced to land in neutral Portugal. Air personnel who did not survive such crashes were buried in Portuguese cemeteries or in the English Cemetery, Lisbon.Portugal's peripheral involvement in largely nonbelligerent aspects of the war accelerated social, economic, and political change in Portugal's urban society. It strengthened political opposition to the dictatorship among intellectual and working classes, and it obliged the regime to bolster political repression. The general economic and financial status of Portugal, too, underwent improvements since creditor Britain, in order to purchase wolfram, foods, and other materials needed during the war, became indebted to Portugal. When Britain repaid this debt after the war, Portugal was able to restore and expand its merchant fleet. Unlike most of Europe, ravaged by the worst war in human history, Portugal did not suffer heavy losses of human life, infrastructure, and property. Unlike even her neighbor Spain, badly shaken by its terrible Civil War (1936-39), Portugal's immediate postwar condition was more favorable, especially in urban areas, although deep-seated poverty remained.Portugal experienced other effects, especially during 1939-42, as there was an influx of about a million war refugees, an infestation of foreign spies and other secret agents from 60 secret intelligence services, and the residence of scores of international journalists who came to report the war from Lisbon. There was also the growth of war-related mining (especially wolfram and tin). Portugal's media eagerly reported the war and, by and large, despite government censorship, the Portuguese print media favored the Allied cause. Portugal's standard of living underwent some improvement, although price increases were unpopular.The silent invasion of several thousand foreign spies, in addition to the hiring of many Portuguese as informants and spies, had fascinating outcomes. "Spyland" Portugal, especially when Portugal was a key point for communicating with occupied Europe (1940-44), witnessed some unusual events, and spying for foreigners at least briefly became a national industry. Until mid-1944, when Allied forces invaded France, Portugal was the only secure entry point from across the Atlantic to Europe or to the British Isles, as well as the escape hatch for refugees, spies, defectors, and others fleeing occupied Europe or Vichy-controlled Morocco, Tunisia, and Algeria. Through Portugal by car, ship, train, or scheduled civil airliner one could travel to and from Spain or to Britain, or one could leave through Portugal, the westernmost continental country of Europe, to seek refuge across the Atlantic in the Americas.The wartime Portuguese scene was a colorful melange of illegal activities, including espionage, the black market, war propaganda, gambling, speculation, currency counterfeiting, diamond and wolfram smuggling, prostitution, and the drug and arms trade, and they were conducted by an unusual cast of characters. These included refugees, some of whom were spies, smugglers, diplomats, and business people, many from foreign countries seeking things they could find only in Portugal: information, affordable food, shelter, and security. German agents who contacted Allied sailors in the port of Lisbon sought to corrupt and neutralize these men and, if possible, recruit them as spies, and British intelligence countered this effort. Britain's MI-6 established a new kind of "safe house" to protect such Allied crews from German espionage and venereal disease infection, an approved and controlled house of prostitution in Lisbon's bairro alto district.Foreign observers and writers were impressed with the exotic, spy-ridden scene in Lisbon, as well as in Estoril on the Sun Coast (Costa do Sol), west of Lisbon harbor. What they observed appeared in noted autobiographical works and novels, some written during and some after the war. Among notable writers and journalists who visited or resided in wartime Portugal were Hungarian writer and former communist Arthur Koestler, on the run from the Nazi's Gestapo; American radio broadcaster-journalist Eric Sevareid; novelist and Hollywood script-writer Frederick Prokosch; American diplomat George Kennan; Rumanian cultural attache and later scholar of mythology Mircea Eliade; and British naval intelligence officer and novelist-to-be Ian Fleming. Other notable visiting British intelligence officers included novelist Graham Greene; secret Soviet agent in MI-6 and future defector to the Soviet Union Harold "Kim" Philby; and writer Malcolm Muggeridge. French letters were represented by French writer and airman, Antoine Saint-Exupery and French playwright, Jean Giroudoux. Finally, Aquilino Ribeiro, one of Portugal's premier contemporary novelists, wrote about wartime Portugal, including one sensational novel, Volframio, which portrayed the profound impact of the exploitation of the mineral wolfram on Portugal's poor, still backward society.In Estoril, Portugal, the idea for the world's most celebrated fictitious spy, James Bond, was probably first conceived by Ian Fleming. Fleming visited Portugal several times after 1939 on Naval Intelligence missions, and later he dreamed up the James Bond character and stories. Background for the early novels in the James Bond series was based in part on people and places Fleming observed in Portugal. A key location in Fleming's first James Bond novel, Casino Royale (1953) is the gambling Casino of Estoril. In addition, one aspect of the main plot, the notion that a spy could invent "secret" intelligence for personal profit, was observed as well by the British novelist and former MI-6 officer, while engaged in operations in wartime Portugal. Greene later used this information in his 1958 spy novel, Our Man in Havana, as he observed enemy agents who fabricated "secrets" for money.Thus, Portugal's World War II experiences introduced the country and her people to a host of new peoples, ideas, products, and influences that altered attitudes and quickened the pace of change in this quiet, largely tradition-bound, isolated country. The 1943-45 connections established during the Allied use of air and naval bases in Portugal's Azores Islands were a prelude to Portugal's postwar membership in the North Atlantic Treaty Organization (NATO). -
111 food
food [fu:d]1 noun(a) (UNCOUNT) (nourishment) nourriture f; (as opposed to drink) manger m; (for expedition) vivres mpl; Agriculture (for animals) pâture f; (for poultry) mangeaille f;∎ is there any food? y a-t-il de quoi manger?;∎ do you have enough food for everyone? avez-vous assez à manger ou assez de nourriture pour tout le monde?;∎ they like spicy food ils aiment la cuisine épicée;∎ we need to buy some food il faut qu'on achète à manger ou qu'on fasse des provisions;∎ we gave them food nous leur avons donné à manger;∎ take some food for the journey prenez de quoi manger pendant le voyage;∎ the food here is especially good dans ce restaurant la cuisine est particulièrement bonne;∎ he's off his food il n'a pas d'appétit, il a perdu l'appétit;∎ the cost of food le prix de la nourriture ou des denrées (alimentaires);∎ foods recommended for diabetics aliments mpl conseillés aux diabétiques∎ the accident gave her much food for thought l'accident l'a fait beaucoup réfléchir;∎ the book provides the reader with food for reflection ce livre donne au lecteur matière à réflexion(c) Horticulture engrais m(industry, product) alimentaire; (crop) vivrier►► food additive additif m alimentaire;the Food and Agriculture Organization Organisation f des Nations unies pour l'alimentation et l'agriculture;food allergy allergie f alimentaire;Ecology food chain chaîne f alimentaire;food combining combinaisons fpl alimentaires;food court = partie d'un centre commercial où se trouvent les restaurants;food critic critique mf gastronomique;American the Food and Drug Administration = organisme officiel chargé de contrôler la qualité des aliments et de délivrer les autorisations de mise sur le marché pour les produits pharmaceutiques;food hygiene regulations réglementation f sur l'hygiène alimentaire;food labelling étiquetage m des produits alimentaires;food manufacturer fabricant m de produits comestibles;food mixer mixeur m;food packaging emballage m des produits alimentaires;food parcel colis m de vivres;food poisoning intoxication f alimentaire;food processing (preparation) traitement m industriel des aliments; (industry) industrie f alimentaire;food processor robot m ménager ou de cuisine;food products produits mpl alimentaires, comestibles mpl, denrées fpl;American food stamp bon m alimentaire (accordé aux personnes sans ressources);the Food Standards Agency = organisme britannique de contrôle de la sécurité alimentaire;food technology technologie f alimentaire;food value valeur f nutritive;Ecology food web réseau m alimentaire -
112 EBRD
abbr. FinEuropean Bank for Reconstruction and Development: the bank, which was established in 1991, developed programs to tackle a variety of issues. These included: the creation and strengthening of infrastructure; industry privatization; the reform of the financial sector, including the development of capital markets and the privatization of commercial banks; the development of productive competitive private sectors of small and medium-sized enterprises in industry, agriculture, and services; the restructuring of industrial sectors to put them on a competitive basis; and encouraging foreign investment and cleaning up the environment. The EBRD had 41 original members: the European Commission, the European Investment Bank, all the EEC countries, and all the countries of Eastern Europe except Albania, which finally became a member in October 1991, followed by all the republics of the former USSR in March 1992. -
113 Cross, Charles Frederick
[br]b. 11 December 1855 Brentwood, Middlesex, Englandd. 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 DistinctionsFRS 1917.Bibliography1888, with E.J.Bevan, A Text-book of Papermaking. 1892, British patent no. 8,700 (cellulose).Further ReadingObituary 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.RLHBiographical history of technology > Cross, Charles Frederick
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114 Foyn, Svend
SUBJECT AREA: Ports and shipping[br]b. 1809 Tønsberg, Norwayd. after 1873[br]Norwegian founder of the modern whaling industry; sea captain and sealer.[br]Svend Foyn's background typified the best of the Norwegian merchant marine: good seamanship, deep religious faith and an investigative and adventurous approach to life based on sound commercial judgement. After the period of training normal to his time, Foyn became a shipmaster and then followed the sealer's trade. By the early 1860s he had amassed a considerable sum of money and began to look around for an area of further conquest. He built whale catchers and operated them with scientific care, and by 1862 his work was recognized in Norway, Scotland and some other countries as personifying the whaling industry. Foyn's inventive approach to this new trade ensured that innovative ideas were accepted and that his inventions—such as the rubber accumulator, the recoil absorber and the harpoon braking system—became an accepted part of the whaler's trade. It is said that his first harpoon gun, invented in 1864, weighed 1 ton. Foyn designed a special whaling winch in 1873 that was protected by patent, the same year that the Norwegian Government granted him a ten-year monopoly on his system for catching whales.[br]Further ReadingJ.H.Harland, 1992, Catchers and Corvettes, the Steam Whalecatcher in Peace and War 1860–1960, Rotherfield, East Sussex: Jean Boudriot.P.Budker, 1958, Whales and Whaling, London: Harrap.FMW -
115 Gibson, R.O.
[br]fl. 1920s–30s[br]English chemist who, with E.O.Fawcett, discovered polythene.[br]Dr Gibson's work towards the discovery of polythene had its origin in a visit in 1925 to Dr A. Michels of Amsterdam University; the latter had made major advances in techniques for studying chemical reactions at very high pressures. After working with Michels for a time, in 1926 Gibson joined Brunner Mond, one of the companies that went on to form the chemical giant Imperial Chemical Industries (ICI). The company supported research into fundamental chemical research that had no immediate commercial application, including the field being cultivated by Michels and Gibson. In 1933 Gibson was joined by another ICI chemist, E.O.Fawcett, who had worked with W.H. Carothers in the USA on polymer chemistry. They were asked to study the effects of high pressure on various reaction systems, including a mixture of benzaldehyde and ethylene. Gibson's notebook for 27 March that year records that after a loss of pressure during which the benzaldehyde was blown out of the reaction tube, a waxy solid was observed in the tube. This is generally recognized as the first recorded observation of polythene. By the following June they had shown that the white, waxy solid was a fairly high molecular weight polymer of ethylene formed at a temperature of 443°K and a pressure of 2,000 bar. However, only small amounts of the material were produced and its significance was not immediately recognized. It was not until two years later that W.P.Perrin and others, also ICI chemists, restarted work on the polymer. They showed that it could be moulded, drawn into threads and cast into tough films. It was a good electrical insulator and almost inert chemically. A British patent for producing polythene was taken out in 1936, and after further development work a production plant began operating in September 1939, just as the Second World War was breaking out. Polythene had arrived in time to make a major contribution to the war effort, for it had the insulating properties required for newly developing work on radar. When peacetime uses became possible, polythene production surged ahead and became the major industry it is today, with a myriad uses in industry and in everyday life.[br]Bibliography1964, The Discovery of Polythene, Royal Institute of Chemistry Lecture Series 1, London.LRD -
116 Goldmark, Peter Carl
[br]b. 2 December 1906 Budapest, Hungaryd. 7 December 1977 Westchester Co., New York, USA[br]Austro-Hungarian engineer who developed the first commercial colour television system and the long-playing record.[br]After education in Hungary and a period as an assistant at the Technische Hochschule, Berlin, Goldmark moved to England, where he joined Pye of Cambridge and worked on an experimental thirty-line television system using a cathode ray tube (CRT) for the display. In 1936 he moved to the USA to work at Columbia Broadcasting Laboratories. There, with monochrome television based on the CRT virtually a practical proposition, he devoted his efforts to finding a way of producing colour TV images: in 1940 he gave his first demonstration of a working system. There then followed a series of experimental field-sequential colour TV systems based on segmented red, green and blue colour wheels and drums, where the problem was to find an acceptable compromise between bandwidth, resolution, colour flicker and colour-image breakup. Eventually he arrived at a system using a colour wheel in combination with a CRT containing a panchromatic phosphor screen, with a scanned raster of 405 lines and a primary colour rate of 144 fields per second. Despite the fact that the receivers were bulky, gave relatively poor, dim pictures and used standards totally incompatible with the existing 525-line, sixty fields per second interlaced monochrome (black and white) system, in 1950 the Federal Communications Commission (FCC), anxious to encourage postwar revival of the industry, authorized the system for public broadcasting. Within eighteen months, however, bowing to pressure from the remainder of the industry, which had formed its own National Television Systems Committee (NTSC) to develop a much more satisfactory, fully compatible system based on the RCA three-gun shadowmask CRT, the FCC withdrew its approval.While all this was going on, Goldmark had also been working on ideas for overcoming the poor reproduction, noise quality, short playing-time (about four minutes) and limited robustness and life of the long-established 78 rpm 12 in. (30 cm) diameter shellac gramophone record. The recent availability of a new, more robust, plastic material, vinyl, which had a lower surface noise, enabled him in 1948 to reduce the groove width some three times to 0.003 in. (0.0762 mm), use a more lightly loaded synthetic sapphire stylus and crystal transducer with improved performance, and reduce the turntable speed to 33 1/3 rpm, to give thirty minutes of high-quality music per side. This successful development soon led to the availability of stereophonic recordings, based on the ideas of Alan Blumlein at EMI in the 1930s.In 1950 Goldmark became a vice-president of CBS, but he still found time to develop a scan conversion system for relaying television pictures to Earth from the Lunar Orbiter spacecraft. He also almost brought to the market a domestic electronic video recorder (EVR) system based on the thermal distortion of plastic film by separate luminance and coded colour signals, but this was overtaken by the video cassette recorder (VCR) system, which uses magnetic tape.[br]Principal Honours and DistinctionsInstitute of Electrical and Electronics Engineers Morris N.Liebmann Award 1945. Institute of Electrical and Electronics Engineers Vladimir K. Zworykin Award 1961.Bibliography1951, with J.W.Christensen and J.J.Reeves, "Colour television. USA Standard", Proceedings of the Institute of Radio Engineers 39: 1,288 (describes the development and standards for the short-lived field-sequential colour TV standard).1949, with R.Snepvangers and W.S.Bachman, "The Columbia long-playing microgroove recording system", Proceedings of the Institute of Radio Engineers 37:923 (outlines the invention of the long-playing record).Further ReadingE.W.Herold, 1976, "A history of colour television displays", Proceedings of the Institute of Electrical and Electronics Engineers 64:1,331.See also: Baird, John LogieKF -
117 Monell, Ambrose
SUBJECT AREA: Metallurgy[br]b. 1874 New York, USAd. 2 May 1921 Beacon, New York, USA[br]American metallurgist who gave his name to a successful nickel-copper alloy.[br]After graduating from Columbia University in 1896. Monell became a metallurgical engineer to the Carnegie Steel Company, rising in six years to be Assistant to the President. In 1900, while Manager of the company's open-hearth steelworks at Pittsburg, he patented a procedure for making high-carbon steel in basic conditions on the hearth of a fixed/stationary furnace; the method was intended to refine pig-iron containing substantial proportions of phosphorus and to do so relatively quickly. The process was introduced at the Homestead Works of the Carnegie Steel Company in February 1900, where it continued in use for some years. In April 1902 Monell was among those who launched the International Nickel Company of New Jersey in order to bring together a number of existing nickel interests; he became the new company's President. In 1904–5, members of the company's metallurgical staff produced an alloy of about 70 parts nickel and 30 copper which seemed to show great commercial promise on account of its high resistance to corrosion and its good appearance. Monell agreed to the suggestion that the new alloy should be given his name; for commercial reasons it was marketed as "Monel metal". In 1917, following the entry of the USA into the First World War, Monell was commissioned Colonel in the US Army (Aviation) for overseas service, relinquishing his presidency of the International Nickel Company but remaining as a director. At the time of his death he was also a director in several other companies in the USA.[br]Bibliography1900, British patent no. 5506 (taken out by O. Imray on behalf of Monell).Monell insinuated an account of his steel-making procedure at a meeting of the Iron and Steel Institute held in London and reported in The Journal of the Iron and SteelInstitute (1900) 1:71–80; some of the comments made by other speakers, particularly B.Talbot, were adverse. The following year (1901) Monell produced a general historical review: "A summary of development in open-hearth steel", Iron TradeReview 14(14 November):39–47.Further ReadingA.J.Wadhams, 1931, "The story of the nickel industry", Metals and Alloys 2(3):166–75 (mentions Monell among many others, and includes a portrait (p. 170)).JKA -
118 Pilkington, Sir Lionel Alexander Bethune (Alastair)
SUBJECT AREA: Chemical technology[br]b. 7 January 1920 Calcutta, India[br]English inventor of the float-glass process.[br]Pilkington was educated at Sherborne School and Trinity College, Cambridge, where he graduated in mechanical science. He spent one year at Cambridge followed by war service, which lasted until 1945. He returned to complete his degree and then joined Pilkington, the well-known glass manufacturer at St Helens' Lancashire, in 1947. Sir Alastair is not, however, related to the Pilkington family of glassmakers.The forming of perfectly flat glass that retained its fire finish had eluded glassmakers for centuries. Until the 1950s the only way of making really flat glass was to form plate glass by continuous casting between steel rollers. This destroyed the fire finish, which had to be restored by expensive grinding and polishing. The process entailed the loss of 20 per cent of good glass. The idea of floating glass on molten metal occurred to Sir Alastair in October 1952, and thereafter he remained in charge of development until commercial success had been achieved. The idea of floating molten glass on molten tin had been patented in the United States as early as 1902, but had never been pursued. The Pilkington process in essence was to float a ribbon of molten glass on a bath of molten tin in an inert atmosphere of nitrogen, to prevent oxidation of the tin. It was patented in Britain in 1957 and in the USA two years later. The first production glass issued from the plant in May 1957, although the first good glass did not appear until July 1958. The process was publicly announced the following year and was quickly taken up by the industry. It is now the universal method for manufacturing high quality flat glass.Having seen through the greatest single advance in glassmaking and one of the most important technological developments this century, Sir Alastair became Chairman of Pilkingtons until 1980 and President thereafter.[br]Principal Honours and DistinctionsKnighted 1970. FRS 1969. Honorary Fellow of Trinity College, Cambridge, 1991.Bibliography1969, "Float glass process—the review lecture", Royal Society (13 February). 1975, "Floating windows", Proceedings of the Royal Institution, Vol. 48.1976, "Float glass—evolution and revolution over 60 years", Glass Technology, Vol. 17, no. 5.1963, "The development of float glass", Glass Industry, (February).Further ReadingJ.Jewkes et al., 1969, The Sources of Invention, 2nd ed., London: Macmillan.LRDBiographical history of technology > Pilkington, Sir Lionel Alexander Bethune (Alastair)
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119 Radcliffe, William
SUBJECT AREA: Textiles[br]b. 1761 Mellor, Cheshire, Englandd. 1842 Mellor, Cheshire, England[br]English inventor of the sizing machine.[br]Radcliffe was brought up in the textile industry and learned carding and spinning as a child. When he was old enough, he became a weaver. It was a time when there were not enough weavers to work up all the yarn being spun on the recently invented spinning machines, so some yarn was exported. Radcliffe regarded this as a sin; meetings were held to prohibit the export, and Radcliffe promised to use his best endeavours to discover means to work up the yarn in England. He owned a mill at Mellor and by 1801 was employing over 1,000 hand-loom weavers. He wanted to improve their efficiency so they could compete against power looms, which were beginning to be introduced at that time.His first step was to divide up as much as possible the different weaving processes, not unlike the plan adopted by Arkwright in spinning. In order to strengthen the warp yarns made of cotton and to reduce their tendency to fray during weaving, it was customary to apply an adhesive substance such as starch paste. This was brushed on as the warp was unwound from the back beam during weaving, so only short lengths could be treated before being dried. Instead of dressing the warp in the loom as was hitherto done, Radcliffe had it dressed in a separate machine, relieving the weaver of the trouble and saving the time wasted by the method previously used. Radcliffe employed a young man names Thomas Johnson, who proved to be a clever mechanic. Radcliffe patented his inventions in Johnson's name to avoid other people, especially foreigners, finding out his ideas. He took out his first patent, for a dressing machine, in March 1803 and a second the following year. The combined result of the two patents was the introduction of a beaming machine and a dressing machine which, in addition to applying the paste to the yarns and then drying them, wound them onto a beam ready for the loom. These machines enabled the weaver to work a loom with fewer stoppages; however, Radcliffe did not anticipate that his method of sizing would soon be applied to power looms as well and lead to the commercial success of powered weaving. Other manufacturers quickly adopted Radcliffe's system, and Radcliffe himself soon had to introduce power looms in his own business.Radcliffe improved the hand looms themselves when, with the help of Johnson, he devised a cloth taking-up motion that wound the woven cloth onto a roller automatically as the weaver operated the loom. Radcliffe and Johnson also developed the "dandy loom", which was a more compact form of hand loom and was also later adapted for weaving by power. Radcliffe was among the witnesses before the Parliamentary Committee which in 1808 awarded Edmund Cartwright a grant for his invention of the power loom. Later Radcliffe was unsuccessfully to petition Parliament for a similar reward for his contributions to the introduction of power weaving. His business affairs ultimately failed partly through his own obstinacy and his continued opposition to the export of cotton yarn. He lived to be 81 years old and was buried in Mellor churchyard.[br]Bibliography1811, Exportation of Cotton Yarn and Real Cause of the Distress that has Fallen upon the Cotton Trade for a Series of Years Past, Stockport.1828, Origin of the New System of Manufacture, Commonly Called "Power-Loom Weaving", Stockport (this should be read, even though it is mostly covers Radcliffe's political aims).Further ReadingA.Barlow, 1870, The History and Principles of Weaving by Hand and by Power, London (provides an outline of Radcliffe's life and work).W.English, 1969, The Textile Industry, London (a general background of his inventions). R.L.Hills, 1970, Power in the Industrial Revolution, Manchester (a general background).D.J.Jeremy, 1981, Transatlantic Industrial Revolution. The Diffusion of Textile Technologies Between Britain and America, 1790–1830s, Oxford (discusses the spread of the sizing machine in America).RLH -
120 Wright, Arthur
[br]b. 1858 London, Englandd. 26 July 1931 Paignton, Devon, England[br]English engineer and electricity supply industry pioneer.[br]Arthur Wright, educated at Maryborough College, attended a course of training at the School of Submarine Telegraphy, Telephony and Electric Light in London. In 1882 he joined the Hammond Company in Brighton, the first company to afford a regular electricity supply in Britain on a commercial basis for street and private lighting. He invented a recording ammeter and also a thermal-demand indicator used in conjunction with a tariff based on maximum demand in addition to energy consumption. This indicator was to remain in use for almost half a century.Resigning his position in Brighton in 1889, he joined the staff of S.Z.de Ferranti and served with him during developments at the Grosvenor Gallery and Deptford stations in London. In 1891 he returned to Brighton as its first Borough Electrical Engineer. From 1900 onwards he had an extensive consulting practice designing early power stations, and was approached by many municipalities and companies in Britain, the United States, South America and Australia, primarily on finance and tariffs. Associated with the founding of the Municipal Electrical Association in 1905, the following year he became its first President.[br]Bibliography1901, British patent no. 23,153 (thermal maximum demand indicator).1922, "Early days of the Brighton electricity supply", Journal of the Institution of Electrical Engineers 60:497–9.Further ReadingObituary, 1931, Journal of the Institution of Electrical Engineers 69:1,327–8.R.H.Parsons, 1939, Early Days of the Power Station Industry, Cambridge, pp. 13–17 (describes Wright's pioneering inventions).GW
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