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radon
Sign in to saveAlso known as Rn, element 86, 86Rn
Radon is a chemical element; it has symbol Rn and atomic number 86. It is a radioactive noble gas and is colorless and odorless. Of the three naturally occurring radon isotopes, only Rn has a sufficiently long half-life (3.825 days) for it to be released from the soil and rock where it is generated. Radon isotopes are the immediate decay products of radium isotopes.
OverviewAI-generated
Radon is a chemical element with the symbol Rn and atomic number 86. It was discovered in 1899. The element has an electronegativity of 2.2. Its electron configuration is listed as 1s² 2s² 2p⁶ 3s² 3p⁶ 4s² 3d¹⁰ 4p⁶ 5s² 4d¹⁰ 5p⁶ 6s² 4f¹⁴ 5d¹⁰ 6p⁶, or alternatively as [Xe] 6s² 4f¹⁴ 5d¹⁰ 6p⁶. The Unicode character for radon is 氡.
The chemical formula for radon is Rn. Its molecular weight is 222.01758. According to PubChem data, radon has a charge of 0, with 0 hydrogen bond donors and 0 hydrogen bond acceptors. The topological polar surface area is 0. The IUPAC name for the element is radon.
Synthesized by Vinony from 22 facts across 4 sources: Wikidata, PubChem, PubMed, Vinony graph. Generated from structured data (not the Wikipedia text) and checked against those facts — may still contain errors.
Chemical data
- Formula
- Rn
- Molecular weight
- 222.01758 g/mol
- IUPAC name
- radon
- SMILES
- [Rn]
- InChIKey
- SYUHGPGVQRZVTB-UHFFFAOYSA-N
- Polar surface area
- 0 Ų
- H-bond donors
- 0
- H-bond acceptors
- 0
- Formal charge
- 0
via PubChem
Research
10,489 papers- Radon and lung cancer: Current status and future prospects.ReviewCritical reviews in oncology/hematology · 2024Liu Y, Xu Y, Xu W et al.DOI: 10.1016/j.critrevonc.2024.104363
- Radon exposure as an occupational risk factor for lung cancer in conventional workplaces. An overview.ReviewExpert review of respiratory medicine · 2024Martin-Gisbert L, García G, Teijeiro A et al.DOI: 10.1080/17476348.2024.2444363
- Radon.ReviewChronic diseases in Canada · 2010Bissett RJ, McLaughlin JR
- Does protracted radon exposure play a role in the development of dementia?Environmental research · 2022Zhang Y, Lu L, Chen C et al.DOI: 10.1016/j.envres.2022.112980
- Outdoor Radon as a Tool to Estimate Radon Priority Areas-A Literature Overview.ReviewInternational journal of environmental research and public health · 2022Čeliković I, Pantelić G, Vukanac I et al.DOI: 10.3390/ijerph19020662
- Development of a Geogenic Radon Hazard Index-Concept, History, Experiences.ReviewInternational journal of environmental research and public health · 2020Bossew P, Cinelli G, Ciotoli G et al.DOI: 10.3390/ijerph17114134
- Radon and health.ReviewLancet (London, England) · 1991Bowie C, Bowie SHDOI: 10.1016/0140-6736(91)91177-v
- Overview of radon gas in groundwater around the world: Health effects and treatment technologies.ReviewJournal of environmental management · 2024Manawi Y, Hassan A, Atieh MA et al.DOI: 10.1016/j.jenvman.2024.122176
via PubMed
~58 min read
Encyclopedic overview
28 sectionsContents
- Characteristics
- Physical properties
- Chemical properties
- Isotopes
- Daughters
- History and etymology
- Occurrence
- Concentration units
- Natural
- Accumulation in buildings
- Industrial production
- Concentration scale
- Applications
- Medical
- Hormesis
- Nuclear medicine
- Scientific
- Health risks
- In mines
- Domestic-level exposure
- Action and reference level
- Inhalation and smoking
- Absorption and ingestion from water
- Testing and mitigation
- See also
- Notes
- References
- External links
Radon is a chemical element; it has symbol Rn and atomic number 86. It is a radioactive noble gas and is colorless and odorless. Of the three naturally occurring radon isotopes, only Rn has a sufficiently long half-life (3.825 days) for it to be released from the soil and rock where it is generated. Radon isotopes are the immediate decay products of radium isotopes.
The instability of Rn, its most stable isotope, makes radon one of the rarest elements. Radon will be present on Earth for several billion more years despite its short half-life, because it is constantly being produced as a step in the decay chains of U and Th, both of which are abundant radioactive nuclides with half-lives of at least several billion years. The decay of radon produces many other short-lived nuclides, known as "radon daughters", ending at stable isotopes of lead. Rn occurs in significant quantities as a step in the normal radioactive decay chain of U, also known as the uranium series, which slowly decays into a variety of radioactive nuclides and eventually decays into stable Pb. Rn occurs in minute quantities as an intermediate step in the decay chain of Th, also known as the thorium series, which eventually decays into stable Pb.
Excerpted from Wikipedia’s “radon” article, available under the CC BY-SA 4.0 licence.
Gallery (39)
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