manganese$46671$ - définition. Qu'est-ce que manganese$46671$
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Qu'est-ce (qui) est manganese$46671$ - définition

Manganese-53; Manganese-44; Manganese-45; Manganese-46; Manganese-47; Manganese-48; Manganese-49; Manganese-50; Manganese-51; Manganese-52; Manganese-54; Manganese-55; Manganese-56; Manganese-57; Manganese-58; Manganese-59; Manganese-60; Manganese-61; Manganese-62; Manganese-63; Manganese-64; Manganese-65; Manganese-66; Manganese-67; Manganese-68; Manganese-69; Manganese-46m; Manganese-50m; Manganese-52m; Manganese-58m; Manganese-60m; Manganese-62m; Manganese-64m; Manganese isotopes; Manganese isotope

Manganese Mines         
HUMAN SETTLEMENT IN NOVA SCOTIA, CANADA
Manganese Mines, Nova Scotia
Manganese Mines is an unincorporated community in Colchester County, Nova Scotia, Canada. Atlas of Canada – Manganese Mines (unincorporated area)
Manganese(III) chloride         
  • MnCl<sub>3</sub>(OPPh<sub>3</sub>)<sub>2</sub>]], a stable derivative form of MnCl<sub>3</sub>
CHEMICAL COMPOUND
Draft:Manganese(III) chloride; MnCl3; Binary manganese(III) chloride
Manganese(III) chloride (Mn(III)Cl3) is not a stable compound and has only been isolated under specialized circumstances. This is in contrast to its neighbors iron(III) chloride, chromium(III) chloride, technetium(III) chloride, and rhenium(III) chloride trimer, which are all isolable compounds and used in chemical synthesis.
manganese         
  • World-War-II-era 5-cent coin (1942-5 identified by mint mark P, D or S above dome) made from a 56% copper-35% silver-9% manganese alloy
  • Unit cell of a α-Mn crystal
  • inhibitor]] – the manganese atoms are shown in yellow.
  • Unit cell of a β-Mn crystal
  • chapter=Ch. 20}}</ref>
  • 130px
  • Credit for first isolating manganese is usually given to [[Johan Gottlieb Gahn]].
  • Aqueous solution of KMnO<sub>4</sub> illustrating the deep purple of Mn(VII) as it occurs in permanganate
  • s2cid=250842390 }}</ref>
  • U.S. M1917 [[combat helmet]], a variant of [[Brodie helmet]], made from [[Hadfield steel]] manganese alloy.
  • 120px
  • Process flow diagram for a manganese refining circuit.
  • Molecular model of [[methylcyclopentadienyl manganese tricarbonyl]] (MMT)
  • 140px
  • Phase diagram of manganese<ref name="Young 1975" />
  • 150px
  • 140px
  • Percentage of manganese output in 2006 by countries<ref name="USGSMCS2009">USGS Mineral Commodity Summaries 2009</ref>
CHEMICAL ELEMENT, SYMBOL MN AND ATOMIC NUMBER 25
Element 25; Manganese ore; Maganese; Manganese compounds; MANGANESE; Manganum; Magnesia negra; Mn2+; Mn²⁺; Manganium; Alloy of aluminium and manganese; Mn (element); Manganese compound; Compounds of manganese; History of manganese; Magnesia nigra; Manganesa; Manganesum; Properties of manganese
['ma?g?ni:z]
¦ noun the chemical element of atomic number 25, a hard grey metal used in special steels and magnetic alloys. (Symbol: Mn)
Derivatives
manganic adjective
manganous adjective
Origin
C17: via Fr. from Ital. manganese, unexplained alt. of med. L. magnesia (see magnesia).

Wikipédia

Isotopes of manganese

Naturally occurring manganese (25Mn) is composed of one stable isotope, 55Mn. 26 radioisotopes have been characterized, with the most stable being 53Mn with a half-life of 3.7 million years, 54Mn with a half-life of 312.3 days, and 52Mn with a half-life of 5.591 days. All of the remaining radioactive isotopes have half-lives that are less than 3 hours and the majority of these have half-lives that are less than a minute. This element also has 3 meta states.

Manganese is part of the iron group of elements, which are thought to be synthesized in large stars shortly before supernova explosions. 53Mn decays to 53Cr with a half-life of 3.7 million years. Because of its relatively short half-life, 53Mn occurs only in tiny amounts due to the action of cosmic rays on iron in rocks. Manganese isotopic contents are typically combined with chromium isotopic contents and have found application in isotope geology and radiometric dating. Mn−Cr isotopic ratios reinforce the evidence from 26Al and 107Pd for the early history of the Solar System. Variations in 53Cr/52Cr and Mn/Cr ratios from several meteorites indicate an initial 53Mn/55Mn ratio that suggests Mn−Cr isotopic systematics must result from in-situ decay of 53Mn in differentiated planetary bodies. Hence 53Mn provides additional evidence for nucleosynthetic processes immediately before coalescence of the Solar System.

The isotopes of manganese range in atomic weight from 46 u (46Mn) to 72 u (72Mn). The primary decay mode before the most abundant stable isotope, 55Mn, is electron capture and the primary mode after is beta decay.