HCC bond angles = 180o allene trigonal planar carbon atoms at the ends and a linear carbon atom in the middle HCaH bond angles ≈ 120o HCaCb bond angles ≈ 120o CaCbCa bond angles = 180 o CC H H H H H H Our current task is to understand hybridization. Even though you probably already studied hybridization, this topic is way too important to ...

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    In the hybridization process, all bond lengths become equal. Bond angles can be explained by the valence‐shell electron‐pair repulsion theory (VSEPR theory). According to this theory, electron pairs repel each other; therefore, the electron pairs that are in bonds or in lone pairs in orbitals around an atom generally separate from each ...

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    Apr 15, 2008 · Identify the best lewis structure for the IF5 molecule and then answer the following: a) what is the hybridization of the "I" atom (either sp, sp2, sp3, sp3d, sp3d2) b) what is the molecular geometry (either square planar, tetrahedral, trig. bypryramidal, octahedral, square pyramidal, trigonal pyramidal, see saw) c) What is the ideal F-I-F bond angle? OCl2, <109.5 the chlorides are too large on a small atom causing the bond angle to increase to ~110 SiCl62-, 90 bipyramid(?) shape so 90 SiCl4, 109.5 tetrahedral 109 SCl2, <109.5 the 2 non bonded pairs decreease bond angle a bit more than PCl3

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