KnowraHybrid orbitalLinked fromLinked fromThe 13 pages that link to Hybrid orbital, each with the reason it gives.All 13Broader topic 3Related 8Narrower topic 1Compared with 1Molecular geometryRelated: Hybrid orbitals offer a bonding picture that connects orbital direction with molecular shape.Atomic orbitalBroader topic: Hybrid orbitals are transformed combinations of atomic orbitals, not additional fundamental states.Molecular orbitalCompared with: Hybrid orbitals describe localized bonding arrangements, unlike molecule-wide orbital eigenfunctions.Pi bondRelated: Hybridization often leaves p orbitals available to form pi bonds.Valence bond theoryBroader topic: Hybrid orbitals adapt atomic orbital shapes to the directions of localized bonds.Sigma bondRelated: Hybrid orbitals commonly point toward neighboring atoms to form sigma bonds.Organic compoundRelated: Hybridization accounts for common carbon geometries in organic molecules.Molecular structureRelated: Hybridization connects local bonding patterns with the angles between bonds.Bent's ruleBroader topic: The rule compares the s and p character assigned to different hybrid orbitals.Trigonal planar molecular geometryNarrower topic: The sp² model describes bonding directions associated with this shape.Allotropes of carbonRelated: The sp³, sp², and sp bonding descriptions distinguish common carbon frameworks.Carbon groupRelated: Carbon’s sp³ hybridization supports its characteristic four-direction tetrahedral bonding.CyclopropeneRelated: Orbital descriptions help account for the distorted bonding at cyclopropene’s alkene carbons.