Yes, OSF4 (oxygen tetrafluoride) is polar due to its bent molecular geometry and the unequal distribution of charge around the molecule. The electronegativity difference between oxygen and fluorine atoms leads to a net dipole moment in the molecule, making it polar.
Tetrahedral
The electron domain geometry of BrF3 is T-shaped. It consists of two bonding domains and three lone pairs of electrons around the central bromine atom, resulting in a T-shaped molecular geometry.
The molecular geometry of H2 is linear. It consists of two hydrogen atoms bonded together, forming a straight line.
Calcium Chloride 12
Yes, OSF4 (oxygen tetrafluoride) is polar due to its bent molecular geometry and the unequal distribution of charge around the molecule. The electronegativity difference between oxygen and fluorine atoms leads to a net dipole moment in the molecule, making it polar.
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.
The molecular geometry of HClO is bent.
The molecular geometry of N2O2 is linear.
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
The molecular geometry of a nitrogen molecule is linear.