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The molecule CH2O has a trigonal planar shape. The carbon atom is at the center, with two hydrogen atoms and one oxygen atom attached, forming a flat, triangular structure.
formaldehyde is sp2 hybradized and is trigonal planar.
The molecule H2CO, formaldehyde, has a trigonal planar molecular shape with a bond angle of 120 degrees. It is a polar molecule due to the difference in electronegativity between carbon and oxygen, resulting in a net dipole moment.
sp2, trigonal planar, bent
The nitrogen atom in NO2 has sp2 hybridization. This means that the nitrogen atom uses one 2s orbital and two 2p orbitals to form three equivalent sp2 hybrid orbitals, resulting in a trigonal planar molecular geometry.
The molecular geometry of boron tribromide is trigonal planar. This is because boron has sp2 hybridization, and the molecule has three surrounding bromine atoms arranged in a planar triangle around the boron atom.
Its a polar bond, for the electrons are more pulled towards the fluorines. It is a trigonal planar molecule. Sp2 hybridization. Hope this helped.
The molecular geometry of C4H8 (butene) is trigonal planar. Each carbon atom is sp2 hybridized, with a bond angle of around 120 degrees between each carbon atom.
In an alkene, the carbon is sp2 hybridized (trigonal planar with 120° bond angles), while in an aromatic ring, the carbon is sp2 hybridized due to resonance. Therefore, a carbon in a molecule with both alkene and aromatic functional groups would also be sp2 hybridized.
In a carbonyl group, the oxygen atom is sp2 hybridized because it forms a sigma bond with the carbon atom using one sp2 orbital and two p orbitals. The remaining lone pair of electrons on the oxygen occupies the remaining sp2 orbital, resulting in a trigonal planar geometry around the oxygen atom.
The central atom in COCl2 is carbon. The carbon atom is sp2 hybridized in COCl2, meaning it has three electron pairs in sp2 hybrid orbitals and forms sigma bonds with three surrounding atoms in a trigonal planar geometry.
The carbon atom in formaldehyde (H2CO) is sp2 hybridized. This is because it has a trigonal planar geometry due to the three sigma bonds formed by overlap of one s and two p orbitals of carbon atom.