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・ Atmosphere
・ Atmosphere (architecture and spatial design)
・ Atmosphere (Atmosphere album)
・ Atmosphere (disambiguation)
・ Atmosphere (Eloy Fritsch album)
・ Atmosphere (journal)
・ Atmosphere (Joy Division song)
・ Atmosphere (Kaskade album)
・ Atmosphere (Kaskade song)
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・ Atmosphere and Telescope Simulator
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Atmosphere of Earth
・ Atmosphere of Enceladus
・ Atmosphere of Jupiter
・ Atmosphere of Mars
・ Atmosphere of Mercury
・ Atmosphere of Pluto
・ Atmosphere of the Moon
・ Atmosphere of Titan
・ Atmosphere of Triton
・ Atmosphere of Uranus
・ Atmosphere of Venus
・ Atmosphere Visual Effects
・ Atmosphere-Space Interaction Monitor
・ Atmosphere-Space Transition Region Explorer
・ Atmospheres (album)


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Atmosphere of Earth : ウィキペディア英語版
Atmosphere of Earth


The atmosphere of Earth is the layer of gases surrounding the planet Earth that is retained by Earth's gravity. The atmosphere protects life on Earth by absorbing ultraviolet solar radiation, warming the surface through heat retention (greenhouse effect), and reducing temperature extremes between day and night (the diurnal temperature variation).
The common name air ((:ɛər)) is given to the atmospheric gases used in breathing and photosynthesis. By volume, dry air contains 78.09% nitrogen, 20.95% oxygen, 0.93% argon, 0.039% carbon dioxide, and small amounts of other gases. Air also contains a variable amount of water vapor, on average around 1% at sea level, and 0.4% over the entire atmosphere. Air content and atmospheric pressure vary at different layers, and air suitable for the survival of terrestrial plants and terrestrial animals is found only in Earth's troposphere and artificial atmospheres.
The atmosphere has a mass of about 5.15 kg,〔Lide, David R. ''Handbook of Chemistry and Physics''. Boca Raton, FL: CRC, 1996: 14-7〕 three quarters of which is within about of the surface. The atmosphere becomes thinner and thinner with increasing altitude, with no definite boundary between the atmosphere and outer space. The Kármán line, at , or 1.57% of Earth's radius, is often used as the border between the atmosphere and outer space. Atmospheric effects become noticeable during atmospheric reentry of spacecraft at an altitude of around . Several layers can be distinguished in the atmosphere, based on characteristics such as temperature and composition.
The study of Earth's atmosphere and its processes is called atmospheric science (aerology). Early pioneers in the field include Léon Teisserenc de Bort and Richard Assmann.〔() Ultraviolet radiation in the solar system By Manuel Vázquez, Arnold Hanslmeier〕
==Composition==
(詳細はnitrogen, oxygen, and argon, which together constitute the major gases of the atmosphere. Water vapor accounts for roughly 0.25% of the atmosphere by mass. The concentration of water vapor (a greenhouse gas) varies significantly from around 10 ppmv in the coldest portions of the atmosphere to as much as 5% by volume in hot, humid air masses, and concentrations of other atmospheric gases are typically provided for dry air without any water vapor.〔Wallace, John M. and Peter V. Hobbs. Atmospheric Science; ''An Introductory Survey''.Elsevier. Second Edition, 2006. ISBN 978-0-12-732951-2. Chapter 1〕 The remaining gases are often referred to as trace gases, among which are the greenhouse gases such as carbon dioxide, methane, nitrous oxide, and ozone. Filtered air includes trace amounts of many other chemical compounds. Many substances of natural origin may be present in locally and seasonally variable small amounts as aerosols in an unfiltered air sample, including dust of mineral and organic composition, pollen and spores, sea spray, and volcanic ash. Various industrial pollutants also may be present as gases or aerosols, such as chlorine (elemental or in compounds), fluorine compounds and elemental mercury vapor. Sulfur compounds such as hydrogen sulfide and sulfur dioxide (SO2) may be derived from natural sources or from industrial air pollution.

抄文引用元・出典: フリー百科事典『 ウィキペディア(Wikipedia)
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