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iridium-192

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EntityQ18883042· pop 7· linked from 41 articles

iridium-192

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Also known as Ir-192, 192Ir, iridium ir-192

Iridium-192 (symbol 192Ir) is a radioactive isotope of iridium, with a half-life of 73.82 days. It decays by emitting beta (β) particles and gamma (γ) radiation. 95.24% of 192Ir decays occur via β- emission, leading to 192Pt; the remaining 4.76% occur via electron capture to 192Os; both modes involve gamma emission. Iridium-192 is normally produced by neutron activation of natural-abundance iridium metal. Iridium-192 is a very strong gamma ray emitter, with a gamma dose constant of 1.54 μSv·h−1·MBq−1 at 30 cm, and a specific activity of 341 TBq·g−1 (9.22 kCi·g−1). There are seven principa

In the Vinony graph

Within Vinony's link graph, iridium-192 is referenced by 41 other articles, and connects out to nuclear isomer, isotope of osmium and isotope of platinum.

Vinony files it under Isotope content page and Isotopes of iridium.

Its subject is documented across 7 Wikipedia language editions.

Chemical data

Formula
Ir
Molecular weight
191.9626 g/mol
IUPAC name
iridium-192
SMILES
[192Ir]
InChIKey
GKOZUEZYRPOHIO-IGMARMGPSA-N
Polar surface area
0 Ų
H-bond donors
0
H-bond acceptors
0
Formal charge
0

via PubChem

Wikidata facts

Subclass of
iridium
Mass
191.963
Show 10 more facts
atomic number
77
neutron number
115
half-life
73.829
spin quantum number
4.0
parity quantum number
1
mass excess
-34835.561
isomeric SMILES
[192Ir]
binding energy
1524287.808
chemical formula
Ir
canonical SMILES
[Ir]
Sources (6)

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~2 min read

Encyclopedic overview

2 sections
Contents
  • See also
  • References

Iridium-192 (symbol 192Ir) is a radioactive isotope of iridium, with a half-life of 73.82 days. It decays by emitting beta (β) particles and gamma (γ) radiation. 95.24% of 192Ir decays occur via β- emission, leading to 192Pt; the remaining 4.76% occur via electron capture to 192Os; both modes involve gamma emission. Iridium-192 is normally produced by neutron activation of natural-abundance iridium metal. Iridium-192 is a very strong gamma ray emitter, with a gamma dose constant of 1.54 μSv·h−1·MBq−1 at 30 cm, and a specific activity of 341 TBq·g−1 (9.22 kCi·g−1). There are seven principal gamma rays produced in its beta-minus decay, ranging from 296.0 to 612.5 keV, and two produced in its electron capture decay at 205.8 and 484.6 keV. It is commonly used as a gamma ray source in industrial radiography to locate flaws in metal components. It is also used in radiotherapy as a radiation source, in particular in brachytherapy. Iridium-192 has accounted for the majority of cases tracked by the U.S. Nuclear Regulatory Commission in which radioactive materials have gone missing in quantities large enough to make a dirty bomb.

The metastable isomer 192m2Ir is iridium's most stable isomer. It decays solely by isomeric transition (to this ground state) with a half-life of 241 years, which is somewhat unusual for its long half-life and that said half-life greatly exceeds that of the ground state.

Excerpted from Wikipedia’s “iridium-192” article, available under the CC BY-SA 4.0 licence.

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