thorium - ορισμός. Τι είναι το thorium
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Τι (ποιος) είναι thorium - ορισμός

CHEMICAL ELEMENT WITH THE ATOMIC NUMBER OF 90
Element 90; Thoric; Thorium processing; Thorium Processing; Torium; User:Double sharp/Thorium; Th (element); History of thorium
  • O(2−)}}: <span style="color:#9c0; background:#9c0;">__</span>
  • The 4''n'' [[decay chain]] of <sup>232</sup>Th, commonly called the "thorium series"
  • bibcode=1953PhRv...91.1474R}}</ref>
  • [[Jöns Jacob Berzelius]], who first identified thorium as a new element
  • F−}}: <span style="color:#9c0; background:#9c0;">__</span>
  • access-date=26 June 2016}}</ref>
  • [[World War II]] thorium dioxide gas mantle
  • Experiment on the effect of radiation (from an unburned thorium gas mantle) on the germination and growth of [[timothy-grass]] seed
  • [[Glenn T. Seaborg]], who settled thorium's location in the f-block
  • η^{8}\-C8H8)ThCl2(THF)2}}
  • Sandwich molecule structure of thorocene
  • Yellowed thorium dioxide lens (left), a similar lens partially de-yellowed with ultraviolet radiation (centre), and lens without yellowing (right)

Thorium         
·noun A metallic element found in certain rare minerals, as thorite, pyrochlore, monazite, ·etc., and isolated as an infusible gray metallic powder which burns in the air and forms thoria;
- formerly called also thorinum. Symbol Th. Atomic weight 232.0.
thorium         
['??:r??m]
¦ noun the chemical element of atomic number 90, a white radioactive metal of the actinide series. (Symbol: Th)
Origin
C19: named after Thor, the Scandinavian god of thunder.
Thorium         
Thorium is a weakly radioactive metallic chemical element with the symbol Th and atomic number 90. Thorium is silvery and tarnishes black when it is exposed to air, forming thorium dioxide; it is moderately soft and malleable and has a high melting point.

Βικιπαίδεια

Thorium

Thorium is a weakly radioactive metallic chemical element with the symbol Th and atomic number 90. Thorium is silvery and tarnishes black when it is exposed to air, forming thorium dioxide; it is moderately soft and malleable and has a high melting point. Thorium is an electropositive actinide whose chemistry is dominated by the +4 oxidation state; it is quite reactive and can ignite in air when finely divided.

All known thorium isotopes are unstable. The most stable isotope, 232Th, has a half-life of 14.05 billion years, or about the age of the universe; it decays very slowly via alpha decay, starting a decay chain named the thorium series that ends at stable 208Pb. On Earth, thorium and uranium are the only significantly radioactive elements that still occur naturally in large quantities as primordial elements. Thorium is estimated to be over three times as abundant as uranium in the Earth's crust, and is chiefly refined from monazite sands as a by-product of extracting rare-earth metals.

Thorium was discovered in 1828 by the Norwegian amateur mineralogist Morten Thrane Esmark and identified by the Swedish chemist Jöns Jacob Berzelius, who named it after Thor, the Norse god of thunder. Its first applications were developed in the late 19th century. Thorium's radioactivity was widely acknowledged during the first decades of the 20th century. In the second half of the century, thorium was replaced in many uses due to concerns about its radioactivity.

Thorium is still being used as an alloying element in TIG welding electrodes but is slowly being replaced in the field with different compositions. It was also material in high-end optics and scientific instrumentation, used in some broadcast vacuum tubes, and as the light source in gas mantles, but these uses have become marginal. It has been suggested as a replacement for uranium as nuclear fuel in nuclear reactors, and several thorium reactors have been built. Thorium is also used in strengthening magnesium, coating tungsten wire in electrical equipment, controlling the grain size of tungsten in electric lamps, high-temperature crucibles, and glasses including camera and scientific instrument lenses. Other uses for thorium include heat-resistant ceramics, aircraft engines, and in light bulbs. Ocean science has utilised 231Pa/230Th isotope ratios to understand the ancient ocean.

Παραδείγματα από το σώμα κειμένου για thorium
1. Intensive research is essential for converting thorium for maximising its utilisation and generating electric power through thorium–based reactors," Kalam said.
2. This differential gain in fissile formation makes ATBR a kind of thorium breeder.
3. Thorium is a radioactive metal and the firm develops proliferation resistant nuclear fuel technologies.
4. The fast breeder reactors developed by India can convert non–fissile thorium to fissile uranium.
5. Thorium, a non–fissile material is available in abundance in our country.