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13.3.1 Molecular Orbital Theory (Video)

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    342500
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    Video Topics

    Molecular Orbital Theory: When two atoms approach each other to form a bond their individual atomic orbitals combine to form molecular orbitals (MO’s). MO's are still determined by wave functions. Molecular orbitals can hold 2 e- and the electron spin must be opposite. In H2, when the 2 s orbitals approach each other the waves have constructive interference (Addition) to form a bonding molecular orbital-1s. The sigma1s MO is lower in energy than the 1s orbital. The s orbitals can also have destructive interference (Subtraction) to form an antibonding molecular orbital sigma1s*. Sigma1s* is higher in energy than the 1s orbital. The number of MO formed is equal to the number of atomic orbitals combined. MO’s are filled following Hund’s rule and the Pauli Exclusion Principle just like orbital diagrams.

    Link to Video

    Molecular Orbital Theory: https://youtu.be/XgtOG0ezw78

     

    Attribution


    13.3.1 Molecular Orbital Theory (Video) is shared under a not declared license and was authored, remixed, and/or curated by LibreTexts.

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