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- Tetrahedral_molecular_geometry abstract "In a tetrahedral molecular geometry, a central atom is located at the center with four substituents that are located at the corners of a tetrahedron. The bond angles are cos−1(−1/3) ≈ 109.5° when all four substituents are the same, as in CH4. The perfectly symmetrical tetrahedron belongs to point group Td, but most tetrahedral molecules are not of such high symmetry. Tetrahedral molecules can be chiral.".
- Tetrahedral_molecular_geometry thumbnail Tetrahedral-3D-balls.png?width=300.
- Tetrahedral_molecular_geometry wikiPageExternalLink MolecularModeling1.htm.
- Tetrahedral_molecular_geometry wikiPageExternalLink 4BP.html.
- Tetrahedral_molecular_geometry wikiPageExternalLink www.3dchem.com.
- Tetrahedral_molecular_geometry wikiPageExternalLink mainpage.htm.
- Tetrahedral_molecular_geometry wikiPageExternalLink 204tetrahedral.html.
- Tetrahedral_molecular_geometry wikiPageExternalLink www.iumsc.indiana.edu.
- Tetrahedral_molecular_geometry wikiPageExternalLink Molecules_pov.html.
- Tetrahedral_molecular_geometry wikiPageExternalLink tetrahed.htm.
- Tetrahedral_molecular_geometry wikiPageID "3797882".
- Tetrahedral_molecular_geometry wikiPageRevisionID "606127854".
- Tetrahedral_molecular_geometry atomDirection "4".
- Tetrahedral_molecular_geometry bondAngle "≈109.5°".
- Tetrahedral_molecular_geometry electronDirection "4".
- Tetrahedral_molecular_geometry examples Methane.
- Tetrahedral_molecular_geometry examples Phosphate.
- Tetrahedral_molecular_geometry examples Sulfate.
- Tetrahedral_molecular_geometry hasPhotoCollection Tetrahedral_molecular_geometry.
- Tetrahedral_molecular_geometry imageFile "Tetrahedral-3D-balls.png".
- Tetrahedral_molecular_geometry symmetryGroup Tetrahedral_symmetry.
- Tetrahedral_molecular_geometry subject Category:Molecular_geometry.
- Tetrahedral_molecular_geometry comment "In a tetrahedral molecular geometry, a central atom is located at the center with four substituents that are located at the corners of a tetrahedron. The bond angles are cos−1(−1/3) ≈ 109.5° when all four substituents are the same, as in CH4. The perfectly symmetrical tetrahedron belongs to point group Td, but most tetrahedral molecules are not of such high symmetry. Tetrahedral molecules can be chiral.".
- Tetrahedral_molecular_geometry label "Geometría molecular tetraédrica".
- Tetrahedral_molecular_geometry label "Géométrie moléculaire tétraédrique".
- Tetrahedral_molecular_geometry label "Tetrahedral molecular geometry".
- Tetrahedral_molecular_geometry label "Tetraëdrische moleculaire geometrie".
- Tetrahedral_molecular_geometry label "四面体形".
- Tetrahedral_molecular_geometry label "四面体形分子构型".
- Tetrahedral_molecular_geometry sameAs Geometría_molecular_tetraédrica.
- Tetrahedral_molecular_geometry sameAs Géométrie_moléculaire_tétraédrique.
- Tetrahedral_molecular_geometry sameAs 四面体形.
- Tetrahedral_molecular_geometry sameAs 사면체형.
- Tetrahedral_molecular_geometry sameAs Tetraëdrische_moleculaire_geometrie.
- Tetrahedral_molecular_geometry sameAs m.0b0kcc.
- Tetrahedral_molecular_geometry sameAs Q2677111.
- Tetrahedral_molecular_geometry sameAs Q2677111.
- Tetrahedral_molecular_geometry wasDerivedFrom Tetrahedral_molecular_geometry?oldid=606127854.
- Tetrahedral_molecular_geometry depiction Tetrahedral-3D-balls.png.
- Tetrahedral_molecular_geometry isPrimaryTopicOf Tetrahedral_molecular_geometry.