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  • ...ることで、ヒトはビタミンD<sub>3</sub>([[cholecalciferol/ja|コレカルシフェロール]])を製造することができる。 [[ultraviolet/ja|紫外線]]を浴びると、ビタミンDは生成される。太陽光に含まれる[[UV-B]]を浴びると、7-DHCは中間[[異性体]]として[[Previta ==放射線{{Anchor|Radiation}}== ...
    7 KB (450 words) - 19:17, 11 April 2024
  • ...nufacture vitamin D<sub>3</sub> ([[cholecalciferol]]). Upon exposure to [[ultraviolet]] UV-B rays in the sun light, 7-DHC is converted into vitamin D<sub>3</sub> ==Radiation== ...
    6 KB (846 words) - 19:06, 11 April 2024
  • ...nufacture vitamin D<sub>3</sub> ([[cholecalciferol]]). Upon exposure to [[ultraviolet]] UV-B rays in the sun light, 7-DHC is converted into vitamin D<sub>3</sub> ==Radiation== ...
    6 KB (872 words) - 19:05, 11 April 2024
  • Cholecalciferol is made in the skin following [[Ultraviolet#Subtypes|UVB light]] exposure. It is converted in the liver to [[calcifedio ...ehydrocholesterol undergoes an [[electrocyclic reaction]] as a result of [[Ultraviolet light#Subtypes|UVB light]] at [[wavelengths]] between 290 and 315&nbsp;nm, ...
    18 KB (2,635 words) - 21:30, 11 April 2024
  • Cholecalciferol is made in the skin following [[Ultraviolet#Subtypes|UVB light]] exposure. It is converted in the liver to [[calcifedio ...ehydrocholesterol undergoes an [[electrocyclic reaction]] as a result of [[Ultraviolet light#Subtypes|UVB light]] at [[wavelengths]] between 290 and 315&nbsp;nm, ...
    18 KB (2,713 words) - 21:28, 11 April 2024
  • * by [[electromagnetic radiation]] (EMR): *** [[ultraviolet light therapy]] ...
    31 KB (4,067 words) - 16:45, 3 January 2023
  • Plants synthesize pyridoxine as a means of protection from the [[UV-B|UV-B radiation]] found in sunlight and for the role it plays in the synthesis of [[chlorop ...tributes to protection from sunlight. [[Ultraviolet#Subtypes|Ultraviolet-B radiation]] (UV-B) from sunlight stimulates plant growth, but in high amounts can inc ...
    32 KB (4,586 words) - 16:32, 3 April 2024
  • ...tified with vitamin D, as are many breakfast cereals. Mushrooms exposed to ultraviolet light contribute useful amounts of vitamin D<sub>2</sub>. Dietary recommend ...tamin D<sub>3</sub> was defined and shown to result from the [[ultraviolet|ultraviolet irradiation]] of 7-dehydrocholesterol. A chemical nomenclature for vitamin ...
    61 KB (8,956 words) - 20:04, 4 February 2024
  • Plants synthesize pyridoxine as a means of protection from the [[UV-B|UV-B radiation]] found in sunlight and for the role it plays in the synthesis of [[chlorop ...tributes to protection from sunlight. [[Ultraviolet#Subtypes|Ultraviolet-B radiation]] (UV-B) from sunlight stimulates plant growth, but in high amounts can inc ...
    32 KB (4,696 words) - 16:32, 3 April 2024
  • ...tified with vitamin D, as are many breakfast cereals. Mushrooms exposed to ultraviolet light contribute useful amounts of vitamin D<sub>2</sub>. Dietary recommend ...tamin D<sub>3</sub> was defined and shown to result from the [[ultraviolet|ultraviolet irradiation]] of 7-dehydrocholesterol. A chemical nomenclature for vitamin ...
    63 KB (9,192 words) - 20:03, 4 February 2024
  • ...料として、またゴムの製造において熱を分散させる[[触媒]]として広く使用されている。酸化亜鉛はゴムポリマーやプラスチックを[[ultraviolet radiation/ja|紫外線]](UV)から保護するために使われる。酸化亜鉛の[[:en:semiconductor|半導体]]特性は[[:en:varistor|バ ...
    84 KB (3,193 words) - 21:48, 20 April 2024
  • ...ion is particularly important because a significant portion of ultraviolet radiation exposure from the sun occurs during childhood and adolescence and can subse ...ational agencies and organizations to keep children away from excessive UV radiation exposure. ...
    65 KB (9,447 words) - 19:57, 11 January 2023
  • ...c oxide is used to protect rubber polymers and plastics from [[ultraviolet radiation]] (UV). The [[semiconductor]] properties of zinc oxide make it useful in [[ ..., which has a half-life of 244 days and produces intense [[gamma ray|gamma radiation]]. Because of this, zinc oxide used in nuclear reactors as an anti-corrosio ...
    68 KB (10,208 words) - 16:30, 20 April 2024
  • ...c oxide is used to protect rubber polymers and plastics from [[ultraviolet radiation]] (UV). The [[semiconductor]] properties of zinc oxide make it useful in [[ ..., which has a half-life of 244 days and produces intense [[gamma ray|gamma radiation]]. Because of this, zinc oxide used in nuclear reactors as an anti-corrosio ...
    69 KB (10,504 words) - 16:29, 20 April 2024
  • ...epletion]] can expose plants to higher levels of [[Ultraviolet|ultraviolet radiation-B]] (UV-B), resulting in lower growth rates.{{sfn|Björn|Callaghan|Gehrke|Jo ...= U.| last5 = Sonesson| first5 = M. | title = Ozone Depletion, Ultraviolet Radiation and Plant Life|journal=Chemosphere – Global Change Science |volume=1|issue= ...
    127 KB (17,103 words) - 22:13, 3 January 2023
  • ...]) or radiation (e.g., [[x-ray]], [[gamma ray]], [[Ultraviolet|ultraviolet radiation]], particles emitted by unstable isotopes).<ref name="hillisetal2014i"/> Mu ...as CFCs tend to deplete the [[ozone layer]], resulting in more ultraviolet radiation from the sun passing through the Earth's upper atmosphere, thereby causing ...
    274 KB (38,277 words) - 22:26, 3 January 2023
  • ...rotein|fluorescent gene]] added that allows it to glow in the dark under [[ultraviolet light]].<ref>{{cite journal | vauthors = Vàzquez-Salat N, Salter B, Smets G '''Right:''' Bacteria transformed with pGLO visualized under ultraviolet light ...
    217 KB (29,051 words) - 07:55, 4 January 2023