zinc worker - definição. O que é zinc worker. Significado, conceito
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O que (quem) é zinc worker - definição

Zinc-54; Zinc-55; Zinc-56; Zinc-57; Zinc-58; Zinc-59; Zinc-60; Zinc-61; Zinc-62; Zinc-63; Zinc-64; Zinc-65; Zinc-66; Zinc-67; Zinc-68; Zinc-69; Zinc-70; Zinc-71; Zinc-72; Zinc-73; Zinc-74; Zinc-75; Zinc-76; Zinc-77; Zinc-78; Zinc-79; Zinc-80; Zinc-81; Zinc-82; Zinc-83; Zinc-61m1; Zinc-61m2; Zinc-61m3; Zinc-65m; Zinc-69m; Zinc-71m; Zinc-73m1; Zinc-73m2; Zinc-77m; Zinc-78m; Zn-65; Zinc isotopes; Zinc isotope

Isotopes of zinc         
Naturally occurring zinc (30Zn) is composed of the 5 stable isotopes 64Zn, 66Zn, 67Zn, 68Zn, and 70Zn with 64Zn being the most abundant (48.6% natural abundance).
white vitriol         
  • Aqueous solutions of zinc sulfate consist of the [[aquo complex]] [Zn(H<sub>2</sub>O)<sub>6</sub>]<sup>2+</sup>.
CHEMICAL COMPOUND
White vitriol; Zinc vitriol; Zinc Sulphate; Zinc sulphate; Zinc Sulfate; Zinkosite; Zinc (II) sulfate; ZnSO4; White Vitriol; O4SZn; ATC code A12CB01; ATCvet code QA12CB01; Sulphate of zinc; Zinc sulfate monohydrate
¦ noun archaic crystalline zinc sulphate.
Zinc toxicity         
TYPE OF METAL POISONING CAUSED BY EXCESS ZINC IN THE BODY
Excess zinc
Zinc toxicity is a medical condition involving an overdose on, or toxic overexposure to, zinc. Such toxicity levels have been seen to occur at ingestion of greater than 50 mg of zinc.

Wikipédia

Isotopes of zinc

Naturally occurring zinc (30Zn) is composed of the 5 stable isotopes 64Zn, 66Zn, 67Zn, 68Zn, and 70Zn with 64Zn being the most abundant (48.6% natural abundance). Twenty-five radioisotopes have been characterised with the most abundant and stable being 65Zn with a half-life of 244.26 days, and 72Zn with a half-life of 46.5 hours. All of the remaining radioactive isotopes have half-lives that are less than 14 hours and the majority of these have half-lives that are less than 1 second. This element also has 10 meta states.

Zinc has been proposed as a "salting" material for nuclear weapons. A jacket of isotopically enriched 64Zn, irradiated by the intense high-energy neutron flux from an exploding thermonuclear weapon, would transmute into the radioactive isotope 65Zn with a half-life of 244 days and produce approximately 1.115 MeV of gamma radiation, significantly increasing the radioactivity of the weapon's fallout for several years. Such a weapon is not known to have ever been built, tested, or used.