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1 gas of chemical origin
Англо-русский словарь нормативно-технической терминологии > gas of chemical origin
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2 gas of chemical origin
Англо-русский словарь нефтегазовой промышленности > gas of chemical origin
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3 gas of chemical origin
Универсальный англо-русский словарь > gas of chemical origin
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4 gas of radiation-chemical origin
Англо-русский словарь нормативно-технической терминологии > gas of radiation-chemical origin
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5 gas of radiation-chemical origin
Англо-русский словарь нефтегазовой промышленности > gas of radiation-chemical origin
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6 gas of radiation-chemical origin
Универсальный англо-русский словарь > gas of radiation-chemical origin
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7 gas
1. газ, газообразное вещество || выделять газ; наполнять газом, насыщать газом2. горючее; газолин; бензин || заправлять горючим— acid gas— dry gas— end gas— exit gas— fat gas— flue gas— free gas— fuel gas— lean gas— net gas— oil gas— rich gas— rock gas— sour gas— town gas— trip gas— wet gas
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high altitude liquid petroleum gas — сжиженный нефтяной газ с повышенным содержанием бутана (для применения в условиях пониженного атмосферного давления)
— dry gas— foul gas— lean gas— lift gas— oil gas— rich gas— rock gas— sour gas— tank gas— wet gas
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1. газ2. горючее, бензин
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1) газ, газообразное вещество || выделять газ; наполнять газом, насыщать газом2) горючее; газолин; бензин || заправлять горючим•gas in place — запасы газа в коллекторе;
gas in reservoir — пластовой газ;
gas in-situ — газ в пластовых условиях;
gas in solution — растворённый газ;
no gas to surface — газ на поверхность не поступает;
gas originally in place — первоначальные запасы газа в коллекторе;
to boost gas along to its destination — повышать давление газа для доставки его к месту назначения;
to make the gas — выделять газ;
to sweeten gas — удалять из газа соединения серы;
- gas of radiation-chemical originto take-off casing-head gas — отбирать нефтяной газ на устье скважины;
- gas of stratal water
- absorbed gas
- accompanying gas
- acid gas
- active gas
- actual gas
- adsorbed gas
- aerogen gas
- air gas
- air-free gas
- air-producer gas
- alky gas
- all-weather liquefied petroleum gas
- ammonia synthesis gas
- annular gas
- artificial gas
- associated gas
- associated dissolved gas
- associated petroleum gas
- aviation gas
- background gas
- biochemical natural gas
- blanket gas
- blowdown gas
- blue gas
- bottled gas
- Braden head gas
- burned gas
- burning gas
- butane-enriched water gas
- butane-propane gas
- by-product gas
- cap gas
- carbon-dioxide gas
- carbureted gas
- carbureted hydrogen gas
- carbureted water gas
- carrier gas
- casing-head gas
- city gas
- coercible gas
- coke oven gas
- combination gas
- combustible gas
- combustion gas
- commercial gas
- commercial rock gas
- compressed gas
- compressed natural gas
- condensed gas
- condensed natural gas
- conditioned gas
- consumer gas
- conventional gas
- converted gas
- corrosive gas
- crude gas
- cumulative gas injected
- cushion gas
- cylinder gas
- dehydrated petroleum gas
- diluted gas
- dispersed gas
- dissolved gas
- distillation gas
- domestic gas
- drive gas
- dry gas
- dry petroleum gas
- dump gas
- end gas
- enriched gas
- entrained gas
- escaping gas
- exhaust gas
- exit gas
- expansion gas
- extraneous gas
- extremely dry gas
- fat gas
- filtered flue gas
- fire gas
- fixed gas
- flammable gas
- flare gas
- flash gas
- flue gas
- fluorocarbon gas
- flush gas
- formation gas
- formation water gas
- foul gas
- free gas
- fuel gas
- full-stream gas
- fume-laden gas
- furnace gas
- gaslift gas
- gas-well gas
- green gas
- heating gas
- helium-bearing natural gas
- high gas
- high-altitude liquid petroleum gas
- high-BTU gas
- high-calorific gas
- high-line gas
- highly corrosive gas
- high-pressure gas
- high-purity gas
- household fuel gas
- humid gas
- hydrocarbon gas
- ideal gas
- illuminating gas
- immobile gas
- imperfect gas
- imported gas
- inactive gas
- included gas
- incoming gas
- indifferent gas
- industrial gas
- inert gas
- inflammable gas
- initial gas in reservoir
- injected gas
- in-place petroleum gas
- ionized gas
- kerosene gas
- kiln gas
- lean gas
- lean petroleum gas
- liberated gas
- lift gas
- lighting gas
- liquefied gas
- liquefied hydrocarbon gas
- liquefied natural gas
- liquefied petroleum gas
- liquid gas
- liquid natural gas
- liquid petroleum gas
- live gas
- low-boiling gas
- low-calorific gas
- low-pressure petroleum gas
- low-thermal-value fuel gas
- makeup gas
- manufactured gas
- manure gas
- marsh gas
- medium-energy coal-derived gas
- metamorphic natural gas
- methane-rich gas
- mixed gas
- mud gas
- naphtha gas
- native gas
- natural gas
- net gas
- noble gas
- nonassociated gas
- nonassociated natural gas
- noncondensable gas
- noncorrosive gas
- nonhydrocarbon gas
- nonpurified gas
- nonrecoverable gas
- nonstripped petroleum gas
- noxious gas
- occluded gas
- off gas
- oil gas
- oil-dissolved gas
- oil-water gas
- oil-well gas
- olefiant gas
- onboard-stored gas
- oxyhydrogen gas
- paraffin gas
- peat gas
- perfect gas
- petroleum gas
- pipeline gas
- poor gas
- power gas
- processed gas
- produced gas
- producer gas
- product gas
- purchased gas
- purge gas
- radiogenic gas
- purifield gas
- quenching gas
- radioactive gas
- radon gas
- raw natural gas
- reactivation gas
- receiver gas
- recirculated gas
- recoverable gas
- recoverable petroleum gas
- refinery gas
- regeneration gas
- residual gas
- residue gas
- retained gas
- rich gas
- rich petroleum gas
- rock gas
- sales gas
- sedimentary natural gas
- separator gas
- shale gas
- shallow gas
- shocked gas
- sludge gas
- solute gas
- solution gas
- sour gas
- sour petroleum gas
- spent gas
- stabilizer gas
- stack gas
- stillage gas
- stripped gas
- stripped petroleum gas
- stripper gas
- substitute natural gas
- sulfur dioxide gas
- sulfurous gas
- sweet gas
- synthetic gas
- tail gas
- tank gas
- town gas
- toxic gas
- transborder gas
- transcontinental gas
- transported gas
- trapped gas
- treated gas
- trip gas
- unassociated gas
- underground storage gas
- undissolved gas
- unstripped gas
- vadose gas
- washed gas
- waste gas
- water gas
- water-dissolved gas
- well head gas
- wet gas
- wet field gas
- wet petroleum gas
- zero-hydrogen-index gas* * * -
8 газ химического происхождения
Большой англо-русский и русско-английский словарь > газ химического происхождения
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9 газ химического происхождения
Русско-английский словарь по нефти и газу > газ химического происхождения
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10 газ химического происхождения
Русско-английский словарь нормативно-технической терминологии > газ химического происхождения
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11 газ химического происхождения
Универсальный русско-английский словарь > газ химического происхождения
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12 газ радиационно-химического происхождения
Русско-английский словарь нормативно-технической терминологии > газ радиационно-химического происхождения
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13 газ радиационно-химического происхождения
gas of radiation-chemical originБольшой англо-русский и русско-английский словарь > газ радиационно-химического происхождения
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14 газ радиационно-химического происхождения
Русско-английский словарь по нефти и газу > газ радиационно-химического происхождения
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15 газ радиационно-химического происхождения
Универсальный русско-английский словарь > газ радиационно-химического происхождения
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16 источник
origin, principle, producer, source, spring, transmitter, well, ( орграфа) source vertex* * *исто́чник м.
sourceслужи́ть исто́чником — be a source (of), give rise (to), cause, originateисто́чник а́льфа-излуче́ния — alpha sourceбе́лый исто́чник ( лучистой энергии) — white sourceбесконе́чный исто́чник — infinite sourceисто́чник бе́та-излуче́ния — beta sourceисто́чник вихреобразова́ния — vorticity sourceвне́шний исто́чник — external [extraneous] sourceисто́чник возбужде́ния — excitation sourceисто́чник возбужде́ния пла́змы — plasma-excitation sourceисто́чник возмуще́ний — perturbation sourceисто́чник газовыделе́ния — gas emission sourceисто́чник га́мма-излуче́ния — gamma sourceисто́чник дислока́ции — dislocation [Frank-Read] sourceдугово́й исто́чник — arc sourceисто́чник зву́ка — sound sourceисто́чник зву́ка, мни́мый — acoustic(al) imageисто́чник излуче́ния — radiation source; radiator, emitterисто́чник излуче́ния, дипо́льный — dipole sourceисто́чник излуче́ния, изото́пный — isotope (radiation) sourceисто́чник излуче́ния с попере́чной поляриза́цией — transversely polarized sourceисто́чник излуче́ния с продо́льной поляриза́цией — longitudinally polarized sourceисто́чник излуче́ния, я́дерный — nuclear (radiation) sourceи́мпульсный исто́чник — pulsed sourceисто́чник и́мпульсов — impulse sourceисто́чник инфе́кции — focal point of infectionисто́чник информа́ции — information source, information generatorисто́чник иониза́ции — ionization sourceисто́чник ио́нов — ion sourceисто́чник ио́нов, капилля́рный — capillary-type ion sourceискрово́й исто́чник — spark sourceкапилля́рно-дугово́й исто́чник — capillary-arc sourceкогере́нтный исто́чник — coherent sourceкольцево́й исто́чник — ring sourceисто́чник корпускуля́рного излуче́ния — particle sourceкосми́ческий исто́чник — cosmic sourceлине́йный исто́чник — line [linear] sourceмни́мый исто́чник — virtual [image] sourceисто́чник молекуля́рного пучка́ — molecular gunмонохромати́ческий исто́чник — monochromatic sourceисто́чник нака́чки рад.-эл. — pump(ing) sourceнапра́вленный исто́чник — directional sourceисто́чник напряже́ния — voltage sourceнейтро́нный исто́чник — neutron sourceнекогере́нтный исто́чник — incoherent sourceнестациона́рный исто́чник — transient sourceобъё́мный исто́чник — volume sourceоткры́тый исто́чник — bare sourceисто́чник оши́бок — error sourceперви́чный исто́чник — primary sourceисто́чник пита́ния — power [supply] source, power supplyисто́чник пита́ния, авари́йный — emergency sourceисто́чник пита́ния, бортово́й — ( на любом транспортном средстве) on-board lower source; ( на самолете) airborne [airplane] power source; ( на автомобиле) car [truck, vehicle-born] power source; ( на судне) shipboard power sourceпереходи́ть на бортово́й исто́чник пита́ния — transfer load(s) to the on-board power sourceисто́чник пита́ния, запасно́й — alternate supply sourceисто́чник пита́ния, назе́мный — ground power sourceисто́чник пита́ния на то́пливных элеме́нтах — fuel-cell power sourceисто́чник пита́ния, опо́рный — reference supply sourceисто́чник пита́ния, основно́й ( по отношению к аварийному) — normal supply sourceисто́чник пита́ния, сва́рочный — welding (power) sourceисто́чник пита́ния, сва́рочный, для дугово́й сва́рки — arc welding (power) sourceисто́чник пита́ния, сва́рочный, с жё́сткой характери́стикой — constant-potential welding [flat V/ I-curve] sourceисто́чник пита́ния, стабилизи́рованный — брит. stabilized power supply; амер. regulated power supplyпла́зменный исто́чник — plasma sourceпло́ский исто́чник — plane [two-dimensional] sourceисто́чник пожароопа́сности — fire hazardоткры́тое пла́мя представля́ет исто́чник пожароопа́сности — an open flame constitutes [is] a fire hazardпо́лый исто́чник — hollow sourceисто́чник по́ля — field sourceисто́чник постоя́нного ( фиксированного) [m2]напряже́ния — constant-voltage sourceисто́чник постоя́нного ( фиксированного) [m2]то́ка — constant-current sourceпостоя́нный исто́чник — steady sourceпротяжё́нный исто́чник — distributed [extended, spread] sourceисто́чник пылеобразова́ния — dust sourceравноэнергети́ческий исто́чник — equal-energy sourceрадиоакти́вный исто́чник — radioactive sourceисто́чник радиоизлуче́ния — source of radio-frequency radiation, radio sourceисто́чник радиоизлуче́ния, внегалакти́ческий — extragalactic radio sourceисто́чник радиоизлуче́ния, галакти́ческий — galactic radio sourceраспределё́нный исто́чник — distributed [extended, spread] sourceисто́чник рентге́новского излуче́ния — X-ray sourceисто́чник све́та — light sourceисто́чник све́та, газоразря́дный — gas-discharge light sourceисто́чник све́та, искрово́й — spark light sourceисто́чник све́та, иску́сственный — artificial light sourceисто́чник све́та, люминесце́нтный — luminescent light sourceисто́чник све́та, модули́рованный — modulated light sourceисто́чник све́та, радиоакти́вный — radioactive light sourceисто́чник све́та с а́томным пучко́м — atomic-beam light sourceисто́чник све́та, твердоте́льный — solid-state light sourceисто́чник све́та, температу́рный — incandescent sourceисто́чник синхронизи́рующих и́мпульсов — clock source«слоё́ный» исто́чник — sandwiched [sandwich-type] sourceсосредото́ченный исто́чник — lumped sourceисто́чник с пове́рхностной иониза́цией — surface ionization sourceстациона́рный исто́чник — stationary sourceисто́чник с широ́ким энергети́ческим спе́ктром — broad-energy-spectrum sourceисто́чник телефо́нной нагру́зки (линия, прибор или устройство) — telephone traffic sourceисто́чник тепла́ — heat sourceисто́чник тепла́, холо́дный ( в термодинамике) — (heat) sinkисто́чник тепловы́х нейтро́нов — thermal-neutron sourceисто́чник то́ка — (собственно источник тока, в отличие от источника напряжения) current source; ( часто как источник питания) power supply, power [supply] sourceисто́чник то́ка, втори́чный — ( единичный элемент) secondary cell; ( батарея) storage batteryисто́чник то́ка, перви́чный — ( единичный элемент) primary cell; ( батарея) primary-cell batteryисто́чник то́ка, резе́рвный — emergency current generator cellисто́чник то́ка, физи́ческий — physical source of electric energyисто́чник то́ка, хими́ческий — chemical source of electric energyто́чечный исто́чник — point sourceто́чечный, осево́й исто́чник — axial point sourceто́чечный исто́чник с ра́вной фа́зой — cophasal point sourceисто́чник шу́ма — noise sourceщелево́й исто́чник — slit sourceисто́чник электро́нов — electron-emitting sourceисто́чник эне́ргии — energy [power] sourceисто́чник эне́ргии, биологи́ческий — bioelectric power sourceисто́чник эне́ргии, биоэлектри́ческий — bioelectric power sourceэргоди́ческий исто́чник — ergodic sourceэтало́нный исто́чник — standard sourceисто́чник я́дерного излуче́ния — nuclear radiation source -
17 unit
организационная единица; боевая единица (напр. корабль, ЛА танк); подразделение; часть; соединение; расчетно-снабженческая единица; секция; орган; элемент; комплект; агрегат; установка; см. тж. elementbulk petrol (transport) unit — Бр. часть [подразделение] подвоза наливного (бестарного) горючего
counter C3 unit — часть [подразделение] подавления системы оперативного управления и связи
Fleet Marine (Corps) reconnaissance unit — разведывательное подразделение [часть] флотских сил МП
multisensor (AA) firing unit 3PK — с приборным комплексом из нескольких систем обнаружения и сопровождения
photo (graphic) reconnaissance unit — фоторазведывательная часть [подразделение]
surface-launched unit, fuel air explosive — установка дистанционного разминирования объемным взрывом
surface-launched unit, mine — установка дистанционного минирования
tactical (air) control unit — часть [подразделение] управления ТА
war (time) strength (TOE) unit — часть, укомплектованная по штатам военного времени
— air unit— ASA unit— BM unit— border operation unit— car unit— depot support unit— dry unit— EW unit— GM unit— host country unit— HQ unit— logistics support unit— manpack radio unit— marksmanship training unit— mechanized infantry unit— missile-armed unit— nuclear weapon unit— provisional unit— QM unit— Rangers unit— supported unit— TOE unit— transportation unit— truck transport unit— van unit— wet unit* * *1) часть; 2) единица -
18 Mond, Ludwig
SUBJECT AREA: Chemical technology[br]b. 7 March 1839 Cassel, Germanyd. 11 December 1909 London, England[br]German (naturalized English) industrial chemist.[br]Born into a prosperous Jewish merchant family, Mond studied at the Polytechnic in Cassel and then under the distinguished chemists Hermann Kolbe at Marburg and Bunsen at Heidelberg from 1856. In 1859 he began work as an industrial chemist in various works in Germany and Holland. At this time, Mond was pursuing his method for recovering sulphur from the alkali wastes in the Leblanc soda-making process. Mond came to England in 1862 and five years later settled permanently, in partnership with John Hutchinson \& Co. at Widnes, to perfect his process, although complete success eluded him. He became a naturalized British subject in 1880.In 1872 Mond became acquainted with Ernest Solvay, the Belgian chemist who developed the ammonia-soda process which finally supplanted the Leblanc process. Mond negotiated the English patent rights and set up the first ammoniasoda plant in England at Winnington in Cheshire, in partnership with John Brunner. After overcoming many difficulties by incessant hard work, the process became a financial success and in 1881 Brunner, Mond \& Co. was formed, for a time the largest alkali works in the world. In 1926 the company merged with others to form Imperial Chemical Industries Ltd (ICI). The firm was one of the first to adopt the eight-hour day and to provide model dwellings and playing fields for its employees.From 1879 Mond took up the production of ammonia and this led to the Mond producer-gas plant, patented in 1883. The process consisted of passing air and steam over coal and coke at a carefully regulated temperature. Ammonia was generated and, at the same time, so was a cheap and useful producer gas. Mond's major discovery followed the observation in 1889 that carbon monoxide could combine with nickel in its ore at around 60°C to form a gaseous compound, nickel carbonyl. This, on heating to a higher temperature, would then decompose to give pure nickel. Mond followed up this unusual way of producing and purifying a metal and by 1892 had succeeded in setting up a pilot plant to perfect a large-scale process and went on to form the Mond Nickel Company.Apart from being a successful industrialist, Mond was prominent in scientific circles and played a leading role in the setting up of the Society of Chemical Industry in 1881. The success of his operations earned him great wealth, much of which he donated for learned and charitable purposes. He formed a notable collection of pictures which he bequeathed to the National Gallery.[br]Principal Honours and DistinctionsFRS 1891.Bibliography1885, "On the origin of the ammonia-soda process", Journal of the Society of Chemical Industry 4:527–9.1895. "The history of the process of nickel extraction", Journal of the Society of Chemical Industry 14:945–6.Further ReadingJ.M.Cohen, 1956, The Life of Ludwig Mond, London: Methuen. Obituary, 1918, Journal of the Chemical Society 113:318–34.F.C.Donnan, 1939, Ludwig Mond 1839–1909, London (a valuable lecture).LRD -
19 Grove, Sir William Robert
SUBJECT AREA: Electricity[br]b. 11 July 1811 Swansea, Walesd. 1 August 1896 London, England[br]Welsh chemist and physicist, inventor of the Grove electrochemical primary cell.[br]After education at Brasenose College, Oxford, Grove was called to the Bar in 1835. Instead of immediately practising, he became involved in electrical research, devising in 1839 the cell that bears his name. He became Professor of Experimental Philosophy at the London Institution from 1840 to 1845; it was during this period that he built up his high reputation among physicists. In 1846 he published On the Correlation of Physical Forces, which was based on a course of his lectures. He returned to the practice of law, becoming a judge in 1871, but retained his interest in scientific research during his sixteen-year occupancy of the Bench. He served as a member of the Council of the Royal Society in 1846 and 1847 and played a leading part in its reform. Contributing to the science of electrochemistry, he invented the Grove cell, which together with its modification by Bunsen became an important source of electrical energy during the middle of the nineteenth century, before mechanically driven generators became available. The Grove cell had a platinum electrode immersed in strong nitric acid, separated by a porous diaphragm from a zinc electrode in weak sulphuric acid. The hydrogen formed at the platinum electrode was immediately oxidized by the acid, turning it into water. This avoided the polarization which occurred in the early copper-zinc cells. It was a very powerful primary cell with a high voltage and a low internal resistance, but it produced objectionable fumes. Grove also invented his "gas battery", the earliest fuel cell, in which a current resulted from the chemical energy released from combining oxygen and hydrogen. This was developed by Rawcliffe and others, and found applications as a power source in manned spacecraft.[br]Principal Honours and DistinctionsKnighted 1872. FRS 1840. Fellow of the Chemistry Society 1841. Royal Society Royal Medal 1847.Bibliography1846, On the Correlation of Physical Forces, London; 1874, 6th edn, with reprints of many of Grove's papers (his only book, an early view on the conservation of energy).1839, "On a small voltaic battery of great energy", Philosophical Magazine 15:287–93 (his account of his cell).Further ReadingObituary, 1896, Electrician 37:483–4.K.R.Webb, 1961, "Sir William Robert Grove (1811–1896) and the origin of the fuel cell", Journal of the Royal Institute of Chemistry 85: 291–3 (for the present-day significance of Grove's experiments).C.C.Gillispie (ed.), 1972, Dictionary of Scientific Biography, Vol. V, New York, pp. 559–61.GWBiographical history of technology > Grove, Sir William Robert
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chemical element — Introduction also called element, any substance that cannot be decomposed into simpler substances by ordinary chemical processes. Elements are the fundamental materials of which all matter is composed. This article considers the… … Universalium
chemical bonding — ▪ chemistry Introduction any of the interactions that account for the association of atoms into molecules, ions, crystals, and other stable species that make up the familiar substances of the everyday world. When atoms approach one another … Universalium
Chemical element — The periodic table of the chemical elements A chemical element is a pure chemical substance consisting of one type of atom distinguished by its atomic number, which is the number of protons in its nucleus.[1] Familiar examples of … Wikipedia
chemical industry — Introduction complex of processes, operations, and organizations engaged in the manufacture of chemicals and their derivatives. Although the chemical industry may be described simply as the industry that uses chemistry and… … Universalium
Chemical warfare — For other uses, see Chemical warfare (disambiguation). This article forms part of the series Chemical agents Lethal agents Blood agents Cyanogen chloride (CK) … Wikipedia
chemical compound — Introduction any substance composed of identical molecules consisting of atoms (atom) of two or more chemical elements (chemical element). All the matter in the universe is composed of the atoms of more than 100 different chemical elements … Universalium
Gas in a box — In quantum mechanics, the results of the quantum particle in a box can be used to look at the equilibrium situation for a quantum ideal gas in a box which is a box containing a large number of molecules which do not interact with each other… … Wikipedia
Chemical laser — A chemical laser is a laser that obtains its energy from a chemical reaction. Chemical lasers can achieve continuous wave output with power reaching to megawatt levels. They are used in industry for cutting and drilling. Common examples of… … Wikipedia
chemical — adjective relating to chemistry or chemicals. ↘relating to or denoting the use of poison gas or other chemicals as weapons of war. noun a distinct compound or substance, especially one which has been artificially prepared or purified. ↘an… … English new terms dictionary