The molecular geometry is octahedral.
The molecular shape of SCl6 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.
See-saw is the molecular geometry, and trigonal bi-pyramidal is the orbital geometry.
Molecular geometry is tetrahedral has no lone pairs
The molecular shape of SCl6 is octahedral.
SCl6 is octahedral because it has six bonding pairs of electrons surrounding the central sulfur atom, which repel each other and arrange themselves to minimize repulsion. This arrangement leads to a geometric shape where the chlorine atoms are positioned at the vertices of an octahedron, with the sulfur atom at the center. The electron pair geometry is octahedral, and since there are no lone pairs on the sulfur, the molecular geometry is also octahedral.
The molecular geometry of C2H2Br2 is trigonal planar.The molecular geometry of C2H2Br2 is trigonal planar.
The molecular geometry of secl2 is BENT.
The molecular geometry of HClO is bent.
The molecular geometry of N2O2 is linear.
Yes, sulfur hexachloride (SCl6) is a non-polar molecule. Although it has polar bonds between sulfur and chlorine, the symmetrical octahedral geometry of the molecule allows the dipoles to cancel each other out. As a result, there is no overall dipole moment, making SCl6 non-polar.
The molecular geometry of IF4- is square planar.
The molecular geometry of NHF2 is trigonal pyramidal.
See-saw is the molecular geometry, and trigonal bi-pyramidal is the orbital geometry.
The molecular geometry of SO2 is bent, and the electron pair geometry is trigonal planar.
Molecular geometry is tetrahedral has no lone pairs