The molecular geometry of a nitrogen molecule is linear.
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The sp2 hybridization of nitrogen in the NO2 molecule is significant because it allows the nitrogen atom to form three strong sigma bonds with the oxygen atoms. This results in a trigonal planar molecular geometry, which affects the molecule's overall shape and reactivity.
The central nitrogen atom in the molecule N2O has sp hybridization. Each nitrogen atom forms two sigma bonds with the oxygen atom, leading to a linear molecular geometry.
The molecular geometry of the CF3H molecule, based on its Lewis structure, is trigonal pyramidal.
The molecular geometry of HOCN is trigonal planar. This is because the molecule has a central carbon atom with three surrounding atoms (one oxygen, one hydrogen, and one nitrogen) arranged in a flat, triangular shape. This configuration leads to a trigonal planar molecular geometry.
The molecular geometry of NBr3 is trigonal pyramidal. This is because there are three bonding pairs and one lone pair of electrons around the central nitrogen atom, causing the molecule to adopt a trigonal pyramidal shape.