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1 suitable laser
1) Автоматика: соответствующий лазер (напр. с требуемыми параметрами)2) Макаров: соответствующий лазер (напр с требуемыми параметрами) -
2 suitable laser
соответствующий лазер (напр. с требуемыми параметрами)English-Russian dictionary of mechanical engineering and automation > suitable laser
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3 laser
1) лазер; оптический квантовый генератор; оптический квантовый усилитель3) генерировать когерентные световые колебания; усиливать когерентные световые колебания4) лазерный станок; лазерная установка•- anorganic vapor laser
- atomic laser
- basic laser
- carbon dioxide laser
- certified pump laser
- chemical laser
- closed-cycle laser
- CO2 laser
- constant power laser
- continuous wave laser
- continuously pumped laser
- continuum laser
- controlled power laser
- convection laser
- cross beam laser
- CW laser
- diode laser
- doped glass laser
- Doppler broadened laser
- dual-beam laser
- dye laser
- dyed laser
- electric discharge laser
- electric discharged laser
- electrically pulsed laser
- electron-beam controlled gas laser
- electron-beam pumped gas laser
- excimer laser
- exotic laser
- flashlamp-excited laser
- fluid-state laser
- focused laser
- free electron laser
- frequency doubled laser
- gallium arsenide laser
- gas laser
- gas-discharge laser
- gas-dynamic laser
- gas-flow laser
- gas-transport laser
- glass laser
- heavy duty laser
- helium laser
- helium-cadmium laser
- helium-neon laser
- He-Ne laser
- heterojunction laser
- heterostructure laser
- high-data rate laser
- high-energy laser
- high-power laser
- high-power repetitively pulsed laser
- high-powered laser
- high-repetition rate laser
- homojunction laser
- homostructure laser
- industrial laser
- industry laser
- injection laser
- inspection laser
- instrument laser
- iodine laser
- ion laser
- krypton ion laser
- laser pumped laser
- lightweight industry laser
- low-power laser
- low-repetition rate laser
- material-working laser
- metal vapor laser
- molecular gas laser
- molecular laser
- multikilowatt laser
- multiline mode krypton laser
- neodymium glass laser
- noncontact laser
- normal mode solid-state laser
- one-frequency nonadjustable gas laser
- one-frequency nonadjustable laser
- optically pumped molecular gas laser
- organic vapor laser
- partitioned laser
- photodissociative laser
- photoinitiated laser
- photoionized laser
- point laser
- power laser
- probe laser
- pulse neodymium-glass laser
- pulsed dye laser
- pulsed laser
- purpose-made large laser
- radial mode laser
- relatively adjustable laser
- reliable laser
- research laser
- ring laser
- robust laser
- ruby laser
- rugged laser
- scan laser
- scanning laser
- semiconductor laser
- single wavelength laser
- soldering laser
- solid-state laser
- soliton laser
- standalone laser
- stripe-geometry laser
- suitable laser
- supercharged laser
- superhigh performance laser
- superpower laser
- superradiative laser
- tracking laser
- tunable laser
- visible beam laser
- visible laser
- welding laser
- YAG laser
- yttrium aluminum garnet laserEnglish-Russian dictionary of mechanical engineering and automation > laser
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4 thus materials showing RSA become more opaque on exposure to light of suitable wavelength and this property can be exploited for developing optical limiters required to protect eye and others sensors from intensive laser pulses
Общая лексика: таким образом, материУниверсальный англо-русский словарь > thus materials showing RSA become more opaque on exposure to light of suitable wavelength and this property can be exploited for developing optical limiters required to protect eye and others sensors from intensive laser pulses
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5 Kao, Charles Kuen
[br]b. 4 November 1933 Shanghai, China[br]Chinese electrical engineer whose work on optical fibres did much to make optical communications a practical reality.[br]After the Second World War, Kao moved with his family to Hong Kong, where he went to St Joseph's College. To further his education he then moved to England, taking his "A" Levels at Woolwich Polytechnic. In 1957 he gained a BSc in electrical engineering and then joined Standard Telephones and Cables Laboratory (STL) at Harlow. Following the discovery by others in 1960 of the semiconductor laser, from 1963 Kao worked on the problems of optical communications, in particular that of achieving attenuation in optical cables low enough to make this potentially very high channel capacity form of communication a practical proposition; this problem was solved by suitable cladding of the fibres. In the process he obtained his PhD from University College, London, in 1965. From 1970 until 1974, whilst on leave from STL, he was Professor of Electronics and Department Chairman at the Chinese University of Hong Kong, then in 1982–7 he was Chief Scientist and Director of Engineering with the parent company ITT in the USA. Since 1988 he has been Vice-Chancellor of Hong Kong University.[br]Principal Honours and DistinctionsFranklin Institute Stuart Ballantine Medal 1977. Institute of Electrical and Electronic Engineers Morris N.Liebmann Memorial Prize 1978; L.M.Ericsson Prize 1979. Institution of Electrical Engineers A.G.Bell Medal 1985; Faraday Medal 1989. American Physical Society International Prize for New Materials 1989.Bibliography1966, with G.A.Hockham, "Dielectric fibre surface waveguides for optical frequencies", Proceedings of the Institution of Electrical Engineers 113:1,151 (describes the major step in optical-fibre development).1982, Optical Fibre Systems. Technology, Design \& Application, New York: McGraw- Hill.1988, Optical Fibre, London: Peter Peregrinus.Further ReadingW.B.Jones, 1988, Introduction to Optical Fibre Communications: R\&W Holt.KF
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