The three hydrogen atoms and the lone electron pair are as far apart as possible at nearly 109 o bond angle. This is tetrahedral electron pair geometry. The lone electron pairs exerts a little extra repulsion on the three bonding hydrogen atoms to create a slight compression to a 107 o bond angle. Bond angles = Hybridization of Molecules: The hybridization of an atom is equal to the number of bonds formed with that atom (double or triple bonds being counted as 1), and the number of lone ...

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    An explanation of the molecular geometry for the BCl3 ion (Boron trichloride) including a description of the BCl3 bond angles. The electron geometry for the ...

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    In each case there are four regions of electron density associated with the valence shell so that a tetrahedral bond angle is expected. The measured bond angles of these compounds (H 2 O 104.5º & NH 3 107.3º) show that they are closer to being tetrahedral than trigonal or linear. Of course, it is the configuration of atoms (not electrons ... A carbon atom bound to three atoms (two single bonds, one double bond) is sp 2 hybridized and forms a flat trigonal or triangular arrangement with 120° angles between bonds. Notice that acetic acid contains one sp 2 carbon atom and one sp 3 carbon atom.

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