NO2 is the molecular formula for NO2.
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.
See-saw is the molecular geometry, and trigonal bi-pyramidal is the orbital geometry.
NO2 is the molecular formula for NO2.
The molecular geometry of NO2- is bent or angular. The nitrogen atom has one lone pair and two bonding pairs around it, resulting in a trigonal planar arrangement. The lone pair causes repulsion, resulting in a bent shape.
No, NO2- is not linear. It has a bent molecular geometry due to the lone pair of electrons on the nitrogen atom, causing the bond angles to deviate from 180 degrees.
Yes, NO2- is a dipole because it has a non-linear molecular geometry with a lone pair on the nitrogen atom. This results in an unequal distribution of charge, making it polar.
NO2 is polar because it has a bent molecular geometry with an uneven distribution of electrons, creating a dipole moment. This means that the molecule has a positive end and a negative end, resulting in an overall polar nature.
The electron domain geometry of NO2 is bent or V-shaped, with an angle of approximately 134 degrees. This is because NO2 has two electron domains around the nitrogen atom, resulting in a bent molecular geometry.
The molecular geometry is octahedral.
The molecular geometry of C2H2Br2 is trigonal planar.The molecular geometry of C2H2Br2 is trigonal planar.
The NO2^- ion is expected to have a bent shape due to its trigonal planar molecular geometry with a lone pair on the nitrogen atom, which causes repulsion that distorts the bond angles. This results in a bent molecular shape with a bond angle of approximately 134 degrees.
The molecular geometry of secl2 is BENT.
The molecular geometry of IF4- is square planar.
See-saw is the molecular geometry, and trigonal bi-pyramidal is the orbital geometry.