90, 120, 180.
The bond angles are 120 degrees
square planar
600
The approximate bond angles for BrF5 is approximately 90 degrees because there would be one lone pair of electrons left over, making the molecular shape square pyramidal... This gives an approximate bond angle of 90 degrees. AX5E, sp3d2 hybridized.
This seems like a misprint. IF6 will have one electron too many to attain an octahedral structure with 90 degree bond angles. SF6 is octahedral, for example, and does have 90 degree angles, as does PF6(-1). Perhaps IF6(+1) is the molecule in question, which will have the proper number of electrons.
XeF4 is isostructural with ICl4. Both compounds have a square planar molecular geometry with bond angles of 90 degrees and are considered isostructural due to their similar arrangement of atoms in the molecule.
It is kind of difficult to tell the formula without using subscripts and superscripts, so here is a Lewis Dot structure to make it easier to see. (Ignore the periods.) |.....Cl.......| 1- |.......|.......| |Cl - I - Cl | |.......|.......| |_....Cl....._|
ICl4-'s electron domain geometry is octahedral.
The ion ICl4- is called tetrachloroiodate(1-) ion.
The bond angles are 120 degrees
The bond angles of CO2 are 180 degrees.
90 and 180 are the approximate bond angles.
The bond angles in HClO3 are approximately 109.5 degrees.
The bond angles in HNO2 are approximately 120 degrees.
The bond angles of SO2 are approximately 119 degrees.
The bond angles in BrF5 are approximately 90 degrees.
nonpolar