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The 36 pages that link to Tetrahedral molecular geometry, each with the reason it gives.
AlkaneRelated: Each carbon atom in an alkane typically has four tetrahedrally arranged bonds.
SulfateRelated: The four oxygen atoms occupy the corners around sulfur in sulfate.
EthaneRelated: Each carbon in ethane has approximately tetrahedral geometry.
Carbon–carbon bondRelated: Carbon with four single bonds commonly adopts this geometry.
AmmoniumRelated: Four N–H bonds give ammonium its tetrahedral shape.
TetrahedronRelated: The four bond directions approximate the vertices of a regular tetrahedron.
Arsenic acidRelated: Four oxygen atoms surround arsenic in the arsenate framework.
Ring flipRelated: Cyclohexane carbons retain tetrahedral bonding as the ring changes conformation.
Geminal diolRelated: Hydration changes the carbonyl carbon from trigonal planar to tetrahedral.
ManganateRelated: Four oxygen atoms surround manganese in the manganate ion.
Potassium manganateRelated: Manganate’s four oxygen atoms surround manganese in this geometry.
Titanium tetrachlorideRelated: The four chlorine atoms surround titanium in this geometry.
Silicon tetrachlorideRelated: Four Si–Cl bonds arrange around silicon in a tetrahedral geometry.