Linked from
The 94 pages that link to Molecular geometry, each with the reason it gives.
Carbon dioxideRelated: CO₂ is linear, with oxygen atoms on opposite sides of its central carbon.
Chemical bondRelated: Bonding patterns and electron-pair arrangements determine molecular shape.
MethaneRelated: Methane’s four hydrogen atoms form a tetrahedron around its carbon atom.
Functional groupRelated: A group’s shape influences how it interacts with other molecules.
KetoneRelated: The carbonyl carbon in ketones has a planar, trigonal arrangement.
AllotropyRelated: Some elemental allotropes differ in the shapes and sizes of their molecules.
MoleculeRelated: A molecule's shape follows from its bonds and electron-pair arrangement.
Sigma bondRelated: The directions of sigma bonds help set the arrangement of bonded atoms.
Molecular polarityRelated: Geometry determines whether bond dipoles reinforce or cancel one another.
StereoisomerRelated: Stereoisomers share connectivity but differ in molecular geometry.
Hybrid orbitalRelated: Hybrid-orbital directions provide a simple model for common molecular shapes.
Bent's ruleRelated: Orbital hybridization links Bent's rule to molecular shape.
Dimethyl etherRelated: Its bent C–O–C arrangement shapes polarity and intermolecular forces.
Ball-and-stick modelRelated: The model’s spatial layout displays molecular shape and bond angles.
Space-filling modelRelated: Geometry determines how the scaled atomic spheres overlap in the model.
DimethylamineRelated: Nitrogen’s bonded atoms and lone pair give dimethylamine a pyramidal shape.
Hydrogen selenideRelated: H₂Se has a bent molecular shape rather than a linear one.
Isocyanic acidRelated: The nearly linear N=C=O framework is central to describing HNCO's structure.
Methyl isocyanateRelated: The structure of CH₃NCO helps explain its bonding and chemical behavior.
AllotropeRelated: Elements such as oxygen form allotropes with different molecular structures.
Allotropes of oxygenRelated: O₂ is diatomic, while O₃ has a bent molecular shape.
Chemical polarityRelated: Geometry determines whether individual bond dipoles reinforce or cancel.