Linked from
The 62 pages that link to Orbital hybridisation, each with the reason it gives.
Carbonyl groupRelated: The carbonyl carbon is approximately sp2-hybridized and trigonal planar.
DNA barcodingRelated: Hybrid organisms may carry a barcode inherited from only one parental lineage.
SpeciesRelated: Hybridization can blur boundaries and sometimes transfer genes across species.
CultivarRelated: A deliberate cross may produce the plant selected as the origin of a cultivar.
Sexual reproductionRelated: It deliberately combines inherited material from distinct lineages.
CarbonRelated: Carbon’s sp, sp², and sp³ bonding corresponds to different structures and shapes.
Bond angleRelated: Hybrid orbital directions help account for familiar angles such as 109.5°.
ConformationRelated: Bond geometry constrains rotations and the shapes a molecule can adopt.
CladeRelated: Hybrid ancestry can blur boundaries between otherwise distinct clades.
AllopolyploidyRelated: It brings chromosome sets from different species together in one organism.
Plant reproductionRelated: Crosses between plant lineages can introduce new trait combinations.
BrantaRelated: Branta geese can hybridize, complicating species boundaries and ancestry.
DiacetyleneRelated: The triple-bonded carbons in diacetylene are described as sp hybridized.
Sika deerRelated: Sika deer can hybridize with red deer, raising concerns about genetic integrity.
TimemaRelated: Hybridization has contributed to the origins of some parthenogenetic Timema lineages.