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Transition metals and the crystal field model (7)

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Uploaded by on Jul 17, 2010

Chemistry: Transition metals and the crystal field model. Strong-field case and weak-field case; low-spin case and high-spin case; paramagnetism and diamagnetism; spectrochemical series; colors of complex ions. The localized electron model of bonding in complex ions, also known as the valence bond model

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(1) Introduction. Hund's rule
(2) Application of crystal field theory to octahedral complexes
(3) Continued; strong-field case and weak-field case
(4) An example
(5) Continued; low-spin case and high-spin case
(6) Another example; paramagnetic vs. diamagnetic; spectrochemical series
(7) Effect of metal ion charge on Δ. Another example
(8) How crystal field theory accounts for the colors of complex ions; the color wheel
(9) Continued; complementary colors; an example
(10) Crystal field model for tetrahedral geometry
(11) Continued; an example. Crystal field diagrams for square planar and linear complexes
(12) The localized electron model of bonding in complex ions, also known as the valence bond model
(13) Continued

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  • Does anyone else hear a marching band? LOL <3

  • Thanks to you Mr.Whoever! U are so my star when I'm facing a complete dark tunnel in my Chemistry! Sorry for can't subscribe your channel yet since I don't even have a credit card yet but I'll still support you on Youtube!! =D

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  • but NH3 is neutral !! ???

    Thanks anyway for the enormous help!!

  • Good lecture, thank you for your time and effort!

  • Ur seriously an awesome teacher dude !

  • @McBrand - on the spectrochemical series they're using, being further to the left means that there is a large delta, or a big energy gap between the low energy and high energy orbitals. Like he says, that means that it's the strong field case.

  • @McBrand In the Spectrochemical Series.

  • What did you mean by Cyanide is so far to the left ?

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