Linked from
The 99 pages that link to Chemical element, each with the reason it gives.
CaesiumNarrower topic: Caesium is one element among the 118 currently recognized.
Native metalNarrower topic: Native metals consist of one chemical element, not a chemically bonded mineral compound.
Per Teodor CleveNarrower topic: Cleve’s work helped establish holmium and thulium as distinct elements.
UnbihexiumNarrower topic: Unbihexium would count as an element if atoms with 126 protons were established.
UnquadpentiumRelated: Unquadpentium would be a new element only if nuclei with 145 protons exist.
Vladimir VernadskyNarrower topic: Vernadsky traced elements through minerals, organisms, and planetary environments.
MeitneriumNarrower topic: Meitnerium is defined by its 109 protons, regardless of its isotope.
MendeleviumNarrower topic: Mendelevium’s identity rests on its distinct proton number, despite its tiny production quantities.
UnbiquadiumNarrower topic: Unbiquadium would be a distinct element if nuclei with 124 protons were confirmed.
UnpenthexiumNarrower topic: Unpenthexium would count as a distinct element if nuclei with 156 protons were established.
AllotropeNarrower topic: All allotropes preserve the element’s identity by keeping the same proton number.
Allotropes of oxygenNarrower topic: Allotropy describes different structures made from one element.
UnbitriumNarrower topic: Unbitrium would be a new element only if nuclei with 123 protons were established.
UnhexoctiumNarrower topic: Unhexoctium would qualify as an element if nuclei with 168 protons were established.
UnhexpentiumNarrower topic: The proposed name denotes an element distinguished by its proton count.
UnpentquadiumNarrower topic: Atomic number 154 would define unpentquadium as a distinct element.
UnpentuniumNarrower topic: Unpentunium would be an element if atoms with 155 protons were established.
UnquadquadiumNarrower topic: Unquadquadium is a proposed element, defined by its 144-proton nuclei.
UntrienniumNarrower topic: Untriennium would be a new element if atoms with 139 protons were confirmed.
BohriumNarrower topic: Bohrium is one element, defined by its 107 protons.
Component (mixtures)Compared with: An element can be a component, but components are not limited to elements.
Composition of astronomical objectsNarrower topic: Elemental abundances are the basic inventory used to describe a body's chemistry.
Elemental materialsNarrower topic: An elemental material is classified by the chemical element its atoms contain.
Fire (classical element)Compared with: Modern chemistry replaced elemental fire with experimentally defined substances and composition.
Heinrich KayserNarrower topic: Matching laboratory spectral lines to celestial lines linked spectroscopy to the identification of elements.
Inorganic chemicalsNarrower topic: Elements are the fundamental chemical ingredients of inorganic substances.
NebuliumCompared with: Nebulium was proposed as an element, but no distinct atomic species exists behind its lines.
UnbienniumNarrower topic: Unbiennium would qualify as an element if atoms with 129 protons were confirmed.
UnbiseptiumNarrower topic: Unbiseptium would denote an element defined by 127 protons.
UnhexenniumNarrower topic: Element 169 would be defined by nuclei containing 169 protons.
UnhexseptiumNarrower topic: Unhexseptium would be the name of an element if atomic number 167 were confirmed.
UnoctquadiumNarrower topic: Unoctquadium would be a distinct element if atoms with 184 protons were established.
UnpentbiumNarrower topic: Unpentbium would be a distinct element only if nuclei with 125 protons existed.
UnpentniliumNarrower topic: Unpentnilium would be an element if atoms with 150 protons were established.
UnpentpentiumNarrower topic: Unpentpentium would be a distinct element if atomic number 155 were realized.
UnpenttriumNarrower topic: Unpenttrium would be a distinct element if atoms with 153 protons were established.
UnquadbiumNarrower topic: Unquadbium would join this class if atoms with 142 protons were established.
UnquadenniumNarrower topic: The hypothetical element is defined by having 149 protons per atom.
UnquadhexiumNarrower topic: Unquadhexium would be a distinct element if nuclei with 146 protons were produced.
UnquadoctiumNarrower topic: The proposed name identifies a place in the periodic table, not an established sample of matter.
UnquadseptiumNarrower topic: Unquadseptium names a proposed member of this class, identified by proton count.
UnquadtriumNarrower topic: Unquadtrium would qualify as an element if atoms with 143 protons were established.
UntribiumNarrower topic: Untribium would be a new element if atoms with 123 protons were established.
UntrihexiumNarrower topic: Untrihexium names a proposed element, not an observed substance.
UntrioctiumNarrower topic: Untrioctium would count as an element if nuclei with 138 protons were established.
UntriquadiumNarrower topic: Untriquadium would be a new element if atoms with 134 protons were confirmed.
UntriseptiumNarrower topic: Untriseptium names a proposed member of this fundamental class of matter.
UntritriumNarrower topic: Untritrium's intended referent is an element, not a distinct substance or isotope.
UntriuniumNarrower topic: The proposed element is defined as a new member of this fundamental class.