ultra-violet radiation - translation to ρωσικά
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ultra-violet radiation - translation to ρωσικά

FORM OF ELECTROMAGNETIC RADIATION
Ultra-violet radiation; Ultraviolet radiation; UV; Ultraviolet energy; Ultraviolet light; UV-A; UV-C; UV-B; UVB; UV radiation; Uv; Ultra-violet; Ultraviolet Light; Ultraviolet Rays; Ultraviolet Radiation; UV Radiation; Uv light; UV light; Near ultraviolet; Near UV; UVB radiation; UVA radiation; UV Light; Ultraviolet light absorber; Ultraviolet radiation (biology); Ultra violet; Ultraviolet lamp; Deep ultraviolet; Vacuum UV; Vacuum ultraviolet; Deep UV; Ultraviolet A; Ultraviolet a; Ultraviolet B; Ultraviolet b; Ultraviolet C; Ultraviolet c; Ultra-Violet; UV rays; Ultraviolet Light Absorber; Ultraviolet irradiation; Near-ultraviolet; Ultra-violet light; UV A; UV B; Bee's purple; Ultraviolet ray; UV-light; Ultraviolet-B; UV ray; Ultraviolet rays; UVA blocker; UV-radiation; Far-ultraviolet; Ultraviolet lighting; UV lamp; UV lamps; Far ultraviolet; Uv-B; Ultraviolet Lamp; Ultraviolet waves; Diurnal variation of ultraviolet light; Diurnal variation of ultaviolet light; UV protection; Ultraviolet a radiation; Ultraviolet b radiation; Ultraviolet c radiation; Ultraviolet type; U.V.; Thitonic rays; Chemical rays; UV light irradiation; NUV photons; VUV radition; VUV radiation; Pulsed ultraviolet light; UVR; Vaccum ultraviolet; Ultraviolet LED; Ultraviolet LEDs; UV-irradiation; Ultra violet rays; Hard ultraviolet; UV photon; Middle ultraviolet; Ultra violet light; Oxidizing rays; Tithonic rays; Hard UV; Soft ultraviolet; Soft UV; Dorno radiation; Middle UV; Far UV; UV C; Ultraviolet-A; Ultraviolet-C; H Lyman-α; Hydrogen Lyman-alpha; Hydrogen Lyman-alpha ultraviolet; H Lyman-α ultraviolet; Hydrogen Lyman-alpha radiation; H Lyman-α radiation; Far UV-C; Far UVC; UVB (radiation); UVA (radiation); UVC (radiation); NUV (radiation); MUV (radiation); FUV (radiation); VUV (radiation); Far-UVC; Far-UVC light; Far UV-C light; Dark tithonic rays; De-oxidizing rays; Deoxidizing rays; De-oxidising rays; Deoxidising rays; De-oxidierende Strahlen; Oxidising rays; Ultraviolet spectrum
  • Ultraviolet photons harm the [[DNA]] molecules of living organisms in different ways. In one common damage event, adjacent [[thymine]] bases bond with each other, instead of across the "ladder". This "[[thymine dimer]]" makes a bulge, and the distorted DNA molecule does not function properly.
  • Sunburn effect (as measured by the [[UV index]]) is the product of the sunlight spectrum (radiation intensity) and the erythemal action spectrum (skin sensitivity) across the range of UV wavelengths. Sunburn production per milliwatt of radiation intensity is increased by nearly a factor of 100 between the near UV‑B wavelengths of 315–295 nm
  • UV damaged [[polypropylene]] rope (left) and new rope (right)
  • A collection of mineral samples fluorescing brilliantly at various wavelengths as seen while being irradiated by UV light.
  • IR spectrum showing carbonyl absorption due to UV degradation of [[polyethylene]]
  • Aurora at [[Jupiter]]'s north pole as seen in ultraviolet light by the [[Hubble Space Telescope]].
  • DU/km]]) and blocking of different bands of ultraviolet radiation: In essence, all UVC is blocked by diatomic oxygen (100–200 nm) or by ozone (triatomic oxygen) (200–280 nm) in the atmosphere. The ozone layer then blocks most UVB. Meanwhile, UVA is hardly affected by ozone, and most of it reaches the ground. UVA makes up almost all UV light that penetrates the Earth's atmosphere.
  • A bird appears on many Visa credit cards when they are held under a UV light source
  • sterilizing]] microbiological contaminants from irradiated surfaces.
  • A 380 nanometer UV LED makes some common household items fluoresce.
  • A portrait taken using only UV light between the wavelengths of 335 and 365 nanometers.
  • Signs are often used to warn of the hazard of strong UV sources.
  • Demonstration of the effect of sunscreen. The man's face has sunscreen on his right side only. The left image is a regular photograph of his face; the right image is of reflected UV light. The side of the face with sunscreen is darker because the sunscreen absorbs the UV light.
  • Effects of UV on finished surfaces in 0, 20 and 43 hours.
  • After a training exercise involving fake [[body fluids]], a healthcare worker's [[personal protective equipment]] is checked with ultraviolet light to find invisible drops of fluids. These fluids could contain deadly viruses or other contamination.

ultra-violet radiation         

общая лексика

ультрафиолетовое излучение

ultra         
  • Women cryptologists at work in the U.S. Army's [[Arlington Hall]]
  • A typical Bletchley intercept sheet, after decryption.
  • A typical Bletchley intercept sheet, before decryption and translation.
  • p=302}}
DESIGNATION ADOPTED BY BRITISH FOR MILITARY INTELLIGENCE FROM BROKEN ENEMY CODES
Ultra secret; ULTRA; Ultra (WWII intelligence); Ultra (World War II intelligence); Ultra (cryptography); Ultra program; Ultra (codename); Boniface (cover name)
ultra 1. adj. крайний (об убеждениях, взглядах) 2. noun человек крайних взглядов; ультра
ultraviolet         

[ʌltrə'vaiəlit]

общая лексика

ультрафиолетовый

UV

ультрафиолетовый свет

часть электромагнитного спектра, лежащая за фиолетовым цветом видимой части спектра. Используется, в частности, для стирания ППЗУ

МУФ

медицина

ультрафиолет

прилагательное

физика

ультрафиолетовый (о лучах)

существительное

[ʌltrə'vaiəlit]

оптика

ультрафиолет

ультрафиолетовая область излучения

Ορισμός

ЛАЗЕР
1. пучок света луч, получаемый при помощи такого генератора.
Лечение лазером. Сварка лазером.
2. оптический квантовый генератор, устройство для получения мощных узаконаправленных пучков света.
Импульсный л. Л. непрерывного действия.

Βικιπαίδεια

Ultraviolet

Ultraviolet (UV) is a form of electromagnetic radiation with wavelength shorter than that of visible light, but longer than X-rays. UV radiation is present in sunlight, and constitutes about 10% of the total electromagnetic radiation output from the Sun. It is also produced by electric arcs, Cherenkov radiation, and specialized lights, such as mercury-vapor lamps, tanning lamps, and black lights. Although long-wavelength ultraviolet is not considered an ionizing radiation because its photons lack the energy to ionize atoms, it can cause chemical reactions and causes many substances to glow or fluoresce. Many practical applications, including chemical and biological effects, derive from the way that UV radiation can interact with organic molecules. These interactions can involve absorption or adjusting energy states in molecules, but do not necessarily involve heating.

Short-wave ultraviolet light damages DNA and sterilizes surfaces with which it comes into contact. For humans, suntan and sunburn are familiar effects of exposure of the skin to UV light, along with an increased risk of skin cancer. The amount of UV light produced by the Sun means that the Earth would not be able to sustain life on dry land if most of that light were not filtered out by the atmosphere. More energetic, shorter-wavelength "extreme" UV below 121 nm ionizes air so strongly that it is absorbed before it reaches the ground. However, ultraviolet light (specifically, UVB) is also responsible for the formation of vitamin D in most land vertebrates, including humans. The UV spectrum, thus, has effects both beneficial and harmful to life.

The lower wavelength limit of human vision is conventionally taken as 400 nm, so ultraviolet rays are invisible to humans, although people can sometimes perceive light at shorter wavelengths than this. Insects, birds, and some mammals can see near-UV (NUV) (i.e., slightly shorter wavelengths than what humans can see).

Παραδείγματα από το σώμα κειμένου για ultra-violet radiation
1. Exposure to ultra–violet radiation is responsible for skin cancer, the most commonly diagnosed cancer in Britain.
2. Yet research has found that four out of five sunbeds produce dangerous levels of ultra–violet radiation.
3. No product provides full protection against ultra–violet radiation The European Commission is taking steps to improve labels on sun cream, to give consumers better information about the level of protection it provides.
4. Increased exposure to ultra–violet radiation during warmer and cloudless summer days could cause 2,000 extra cases of cataracts each year and 30,000 more cases of skin cancer. 2080s Milder winters with little frost and snow could save 2',000 cold–related deaths each year.
5. This point was backed by Cambridge solar physicist Nigel Weiss. ‘Periods of high solar activity do not last long, perhaps 50 to 100 years, then you get a crash,‘ he told New Scientist. ‘It is a boom–bust system and I would expect a crash soon.‘ The net result of this sunspot decrease could be to lead to an increase in cloud formation and also to a reduction in ultra–violet radiation reaching the atmosphere.
Μετάφραση του &#39ultra-violet radiation&#39 σε Ρωσικά