The idealized bond angle of NF3 is 107 degrees. This is due to the lone pair of electrons on the nitrogen atom which repels the bonded electron pairs, resulting in a slight compression of the bond angles from the ideal 109.5 degrees of a tetrahedral geometry.
Triginal pyramidal. ~apex
NF3 is a covalent compound because it consists of nonmetals (nitrogen and fluorine) which typically form covalent bonds. In NF3, nitrogen shares its electrons with three fluorine atoms to achieve a stable electron configuration through sharing of electrons. This results in a molecular structure with shared electron pairs between the atoms.
To determine the structural geometry of a molecule, structural pair geometry must be used. These are the amounts of pairs found surrounding a specific molecule, and they are unique to each type of atom.
The electron-domain geometry of ClO4- is tetrahedral. It has four electron domains around the central chlorine atom, resulting in a tetrahedral arrangement.
Tetrahedral
The idealized bond angle of NF3 is 107 degrees. This is due to the lone pair of electrons on the nitrogen atom which repels the bonded electron pairs, resulting in a slight compression of the bond angles from the ideal 109.5 degrees of a tetrahedral geometry.
molecular geometry is bent, electron geometry is tetrahedral
NF3 has four charge clouds, consisting of three bonding pairs and one lone pair around the central nitrogen atom. This results in a trigonal pyramidal molecular geometry for NF3.
The electron geometry (and also, the molecular geometry) of PF5 is Trigonal Bipyramidal.
The electron pair geometry for CS2 is Linear.
The electron-domain geometry of PF6 is Octahedral, since the central atom Phosphorus has an electron pair geometry which is octahedral
I'm unsure what the electron pair geometry is but the molecular geometry is Trigonal Planar.
The electron geometry ("Electronic Domain Geometry") for PF3 is tetrahedral. The molecular geometry, on the other hand, is Trigonal Pyramidal.
electron pair geometry: octahedral molecular geometry: octahedral
The electron geometry of a water molecule is tetrahedral even though the molecular geometry is _____. Bent
Triginal pyramidal. ~apex