The geometry is octrahedral.
Trigonal planar.
tetrahedral
The molecular geometry is octahedral.
The molecular geometry of C2H2Br2 is trigonal planar.The molecular geometry of C2H2Br2 is trigonal planar.
No, SO3 does not have tetrahedral geometry. It has trigonal planar geometry, with a bond angle of approximately 120 degrees.
The electronic geometry of sulfite ion (SO3^2-) is trigonal planar. In this structure, there are three regions of electron density around the sulfur atom, forming a trigonal planar shape.
The geometry is octrahedral.
The electron pair geometry for SO3 is trigonal planar. This is because the sulfur atom is surrounded by three regions of electron density, leading to a molecular geometry with a symmetric, flat triangular shape.
Examples are BF3, SO3 and COCL2.
Trigonal planar.
tetrahedral
The molecular geometry is octahedral.
The molecular geometry of C2H2Br2 is trigonal planar.The molecular geometry of C2H2Br2 is trigonal planar.
The molecular geometry of secl2 is BENT.
SO2 is polar because it has a bent molecular geometry with the sulfur atom at the center and two oxygen atoms bonded asymmetrically, creating a net dipole moment. In contrast, SO3 is nonpolar because it has a trigonal planar molecular geometry with the sulfur atom at the center and three oxygen atoms bonded symmetrically, resulting in a cancellation of dipole moments.
The molecular geometry of the compound CO32- is trigonal planar. It has a single atom of carbon bound to three atoms of oxygen.