Linked from
The 45 pages that link to Oganesson, each with the reason it gives.
Island of stabilityBroader topic: Its short-lived isotopes lie near the proton-rich edge of predictions about superheavy stability.
Superheavy elementBroader topic: It marks the current end of the confirmed periodic table.
Noble gasBroader topic: Relativistic effects may make this heaviest group member less gas-like and more reactive than lighter members.
Superheavy element synthesisBroader topic: Its confirmed production marked the current endpoint of the periodic table.
Joint Institute for Nuclear ResearchBroader topic: The Dubna–Livermore team’s experiments at JINR provided evidence for the element.
UnunenniumCompared with: Oganesson is the last confirmed element before the predicted element 119.
Element discoveryBroader topic: Its synthesis pushed element discovery to nuclei produced in extremely small numbers.
Transuranium elementBroader topic: Its behavior may depart sharply from ordinary noble-gas chemistry.
Transactinide elementBroader topic: It is the highest-numbered element confirmed to date.
MoscoviumRelated: Oganesson’s discovery, like moscovium’s, extended the seventh period.
Noble gas compoundCompared with: Relativistic effects may make this heaviest group member less chemically inert than lighter noble gases.
TennessineRelated: The neighboring element contrasts tennessine’s group-17 placement with the periodic table’s next position.
UnbiniliumRelated: It is the confirmed element immediately preceding the predicted element 120.
Element namingBroader topic: Its name honors physicist Yuri Oganessian, an example of naming after a scientist.
Chemical element namingBroader topic: It shows that an element can honor a living scientist, subject to formal review.
Element 119Compared with: As the heaviest confirmed element, it marks the current boundary just below element 119.
Element naming controversyBroader topic: Its name honors Yuri Oganessian, linking naming practice to recognition of a living scientist.
RutherfordiumCompared with: It illustrates how experiments on still heavier elements extend research beyond rutherfordium.
Superheavy element researchBroader topic: Its synthesis marks the current confirmed endpoint of the periodic table.
Synthetic elementBroader topic: It is the highest-numbered element confirmed to date.
UnbihexiumCompared with: It marks the current confirmed endpoint of the periodic table, far below 126.
UnbiquadiumCompared with: Oganesson is the heaviest confirmed element, setting the current boundary below Unbiquadium.
UnpenthexiumCompared with: Unlike hypothetical element 156, element 118 has confirmed discovery and an accepted name.
Period 7 elementBroader topic: It completes period 7 at its far-right end.
UnhexpentiumCompared with: It is the heaviest confirmed element, marking the experimental limit far below 165.
UnpentquadiumCompared with: It marks the present experimental limit, 36 proton numbers below unpentquadium.
UnpentuniumCompared with: It marks the present confirmed limit, far below unpentunium’s atomic number.
UnquadquadiumCompared with: Oganesson marks the present confirmed endpoint of the periodic table, unlike hypothetical element 144.
UntrienniumCompared with: It marks the current experimental limit that separates confirmed elements from hypothetical element 139.
UntriniliumCompared with: It marks the present experimental boundary, twelve atomic numbers below untrinilium.
UnbibiumCompared with: It marks the boundary between confirmed elements and hypothetical element 122.
UnbioctiumCompared with: Unlike Unbioctium, Oganesson has been synthesized and officially named.
UnbiseptiumCompared with: Its confirmed discovery contrasts with the hypothetical status of element 127.
UnoctquadiumCompared with: Its discovery and permanent naming show the process unoctquadium has not undergone.
UnpentbiumCompared with: Unlike Unpentbium, Oganesson has been produced, confirmed, and officially named.
UnpenttriumCompared with: Oganesson marks the experimentally established boundary beyond which unpenttrium remains hypothetical.
UnquadhexiumCompared with: Unlike unquadhexium, oganesson has been synthesized and received an approved permanent name.
UnquadoctiumCompared with: Unlike unquadoctium, oganesson is a confirmed element with an official name.
UnquadtriumCompared with: It marks the present confirmed endpoint, 25 atomic numbers below Unquadtrium.
UnquaduniumCompared with: Unlike unquadunium, element 118 has been synthesized, verified, and officially named.
UnseptbiumCompared with: It marks the boundary of confirmed elements, far below hypothetical Unseptbium.
UnsepttriumCompared with: It marks the experimentally established boundary that unsepttrium lies beyond.
UntribiumCompared with: It shows the status an element beyond untribium's atomic number would need to reach for permanent naming.
UntrihexiumCompared with: Unlike untrihexium, oganesson has been produced and officially named.
UntrioctiumCompared with: Unlike untrioctium, oganesson has been experimentally produced and officially named.