中英
technetium
/ tekˈniːʃiəm /
/ tekˈniːʃiəm /
  • 简明
  • 柯林斯
  • n.[化学] 锝(放射性元素,位于元素周期表第43位)
  • 网络释义
  • 专业释义
  • 英英释义
  • 1

    [化学] 锝

    锝(Technetium): 化学元素[第五周期第VIIB族元素]。符号Tc。

  • 2

     符号

    Ma是什么意思,Ma怎么读   Ma基本解释 元素(masurium)的符号(现名technetium锝) Ma的用法和例句 提示:点击例句中的单词,就可以看到词义解释 Ma said he has not met with cook but that he has held meeti...

短语
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  • 双语例句
  • 权威例句
  • 1
    They named it Technetium to emphasize that it was artificially created with technology.
    他们把它命名为 Technetium,是为了强调它是用人工和技术相结合而创造的。
  • 2
    As Masurium, it was the first element discovered that occurs in nature only from spontaneous fission, and as Technetium, it was the first element discovered in a laboratory.
    作为 Masurium,它是在自然界中发现的第一种只能通过自然裂变产生的元素;作为锝,它是在实验室中发现的第一种元素。
  • 3
    Technetium-99 is obtained from Molybdenum-99.
    锝- 99从钼- 99中获取。
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  • 词源
1

technetium:

金属元素,来自希腊语 tekhnetos,人造的,人工的,来自 tekhne,艺术,工艺,-ium,金属元素。 因其为第一个由人为加工获取的化学元素而得名。

  • 百科
  • Technetium

    Technetium is a chemical element with symbol Tc and atomic number 43. It is the first element in the periodic table without any stable isotopes; every form of it is radioactive. Nearly all technetium is produced synthetically, and only minute amounts are found in nature. Naturally occurring technetium occurs as a spontaneous fission product in uranium ore or by neutron capture in molybdenum ores. The chemical properties of this silvery gray, crystalline transition metal are intermediate between rhenium and manganese.Many of technetium's properties were predicted by Dmitri Mendeleev before the element was discovered. Mendeleev noted a gap in his periodic table and gave the undiscovered element the provisional name ekamanganese (Em). In 1937, technetium (specifically the technetium-97 isotope) became the first predominantly artificial element to be produced, hence its name (from the Greek τεχνητός, meaning "artificial").Its short-lived gamma ray-emitting nuclear isomer—technetium-99m—is used in nuclear medicine for a wide variety of diagnostic tests. Technetium-99 is used as a gamma ray-free source of beta particles. Long-lived technetium isotopes produced commercially are by-products of fission of uranium-235 in nuclear reactors and are extracted from nuclear fuel rods. Because no isotope of technetium has a half-life longer than 4.2 million years (technetium-98), its detection in 1952 in red giants, which are billions of years old, helped bolster the theory that stars can produce heavier elements.

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