Boron trichloride is an inorganic compound that is a valuable reagent in organic synthesis. It has zero lone pairs on the central atom.
There are 2 lone pairs in TeO3^2-.
In phosphine (PH3), there are three lone pairs and three bonding pairs.
Germanium (Ge) has 2 lone pairs of electrons.
The Si has no lone pairs, but each F has 6 lone pairs. Thus 6 x 4 = 24 lone pairs, total.
The electron-domain geometry for the chlorate ion (ClO3-) is trigonal pyramidal. This geometry arises from the three bonding pairs of electrons between chlorine and the three oxygen atoms, along with one lone pair of electrons on the chlorine atom. The presence of the lone pair affects the shape, leading to the pyramidal arrangement.
Chlorine (nucleus) has 1 lone pair and 3 polar-covalent bonding pairs (the shared pairs with O). Each oxygen (nucleus) has 3 lone pairs and 1 polar-covalent bonding pair (the shared pair with Cl)
Trigonal planar because it has three bonding pairs and one lone pair
There are 2 lone pairs in TeO3^2-.
There are two lone pairs on XeF4.
In phosphine (PH3), there are three lone pairs and three bonding pairs.
Germanium (Ge) has 2 lone pairs of electrons.
No lone pairs
The H2O2 molecule has two lone pairs.
The molecule BeCl2 has zero lone pairs.
There are three lone pairs present in chlorine atom
3 Lone pairs and one unpaired electron
There are two lone pairs on the arsenic atom in ASO2.