fermium definition

  • noun:
    • A synthetic transuranic metallic factor (atomic number 100) having 10 isotopes with mass numbers ranging from 248 to 257 and corresponding half-lives which range from 0.6 moments to roughly 100 days. See Dining Table at factor.
    • A transuranic substance factor (symbol Fm) with an atomic number of 100.
    • the transuranic element of atomic quantity 100; expression Fm. The atomic body weight of the most extremely stable isotope, having a half-life around 80 days, is 257. The first isotope, Fm255 was found in 1952 within the dirt of a thermonuclear explosion. Other istopes have-been stated in atomic reactors by decay of other transuranic elements.
    • a radioactive transuranic metallic element created by bombarding plutonium with neutrons
    • A synthetic transuranic metallic element (atomic quantity 100) having 10 isotopes with size numbers which range from 248 to 257 and corresponding half-lives ranging from 0.6 mins to around 100 days. See Dining Table at element.
    • A transuranic substance element (logo Fm) with an atomic few 100.
    • the transuranic component of atomic quantity 100; image Fm. The atomic weight of the most extremely steady isotope, having a half-life around 80 times, is 257. Initial isotope, Fm255 was discovered in 1952 when you look at the dirt of a thermonuclear explosion. Various other istopes were produced in nuclear reactors and by decay of various other transuranic elements.
    • a radioactive transuranic metallic factor from pestering plutonium with neutrons
    • A synthetic transuranic metallic factor (atomic number 100) having 10 isotopes with mass figures ranging from 248 to 257 and corresponding half-lives ranging from 0.6 minutes to approximately 100 days. See Dining Table at factor.
    • A transuranic chemical element (sign Fm) with an atomic number of 100.
    • the transuranic component of atomic number 100; expression Fm. The atomic fat of the most extremely steady isotope, having a half-life of about 80 times, is 257. The initial isotope, Fm255 was discovered in 1952 within the dirt of a thermonuclear explosion. Various other istopes have now been stated in nuclear reactors and also by decay of other transuranic elements.
    • a radioactive transuranic metallic factor created by pestering plutonium with neutrons
    • A synthetic transuranic metallic element (atomic quantity 100) having 10 isotopes with size figures including 248 to 257 and corresponding half-lives including 0.6 minutes to more or less 100 days. See Dining Table at factor.
    • A synthetic transuranic metallic factor (atomic quantity 100) having 10 isotopes with size figures including 248 to 257 and corresponding half-lives which range from 0.6 mins to around 100 days. See Table at element.
    • A transuranic substance element (icon Fm) with an atomic few 100.
    • A transuranic substance element (representation Fm) with an atomic number of 100.
    • the transuranic element of atomic number 100; image Fm. The atomic weight of the most stable isotope, having a half-life around 80 times, is 257. 1st isotope, Fm255 was discovered in 1952 inside dirt of a thermonuclear surge. Other istopes have already been produced in atomic reactors by decay of various other transuranic elements.
    • the transuranic element of atomic number 100; symbolization Fm. The atomic fat quite stable isotope, having a half-life of approximately 80 days, is 257. Initial isotope, Fm255 ended up being discovered in 1952 in the debris of a thermonuclear surge. Other istopes have already been stated in atomic reactors and by decay of various other transuranic elements.
    • a radioactive transuranic metallic element from pestering plutonium with neutrons
    • a radioactive transuranic metallic element created by bombarding plutonium with neutrons
    • A synthetic transuranic metallic element (atomic number 100) having 10 isotopes with mass numbers ranging from 248 to 257 and corresponding half-lives ranging from 0.6 moments to approximately 100 times. See Table at element.
    • A transuranic chemical element (expression Fm) with an atomic wide range of 100.
    • the transuranic part of atomic quantity 100; sign Fm. The atomic weight of the very stable isotope, having a half-life of approximately 80 times, is 257. The first isotope, Fm255 ended up being found in 1952 inside dirt of a thermonuclear surge. Various other istopes were produced in nuclear reactors by decay of various other transuranic elements.
    • a radioactive transuranic metallic factor made by pestering plutonium with neutrons

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