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  2. To determine the electron pair geometry, follow these steps:
    1. Write the Lewis structure of the molecule or polyatomic ion.
    2. Count the number of regions of electron density (lone pairs and bonds) around the central atom.
    3. Identify the electron-pair geometry based on the number of regions of electron density: linear, trigonal planar, tetrahedral, trigonal bipyramidal, or octahedral123.
    Learn more:
    The following procedure uses VSEPR theory to determine the electron pair geometries and the molecular structures: Write the Lewis structure of the molecule or polyatomic ion. Count the number of regions of electron density (lone pairs and bonds) around the central atom. A single, double, or triple bond counts as one region of electron density.
    pressbooks.online.ucf.edu/chemistryfundamentals/…

    The following procedure uses VSEPR theory to determine the electron pair geometries and the molecular structures:

    • Write the Lewis structure of the molecule or polyatomic ion.
    chem-textbook.ucalgary.ca/version2/chapter-7b-m…
    Thus, the “Electron Group” geometry of each central atom in a structure can be determined by simply counting the number of “groups” of electrons around the atom, then considering how those groups would arrange themselves to be as far apart as possible.
    www.chm.uri.edu/cbrittain/molecular_geometry.pdf
     
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