5) Draw the orbital splitting diagram, calculate crystal field stabilization energy and indicate whether the coordination compound gives coloured solutions or not according to the Crystal Field Theory (CFT) (3th row).

Chemistry
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Chapter1: Chemical Foundations
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1st row
Nomenculation
[Pt(NH3)4(OH)2]SO4
[Pt(NH3)4][PtBr4]
[Pt(NH3)4][CuCl4]
[Co(NH3)4Brz]CI
[Cr(NH3)6][Co(CN)6]
K3[Fe(Ox)3]
Na3[Co(NO₂)6]
2nd row
Isomerism, EAN
Cl
[Co(NO₂)(SCN) (en)2]
[Co(NH3)4Cl2]NO₂
[Co(en)2(NH3)CI]SO4
[Cr(H₂O)4(NO2) CI] Br
[Co(en)2(NO₂)SCN] Br
[Pt(NH3)3Cl3] Br
[Co(NH3)sBr]SO4
M
3th row
VBT, CFT, MOT,
Jahn Teller
[FeF6]³
[Mn(CN)6]
[Cu(en)]2+
[Pd(NH3)6]4+
[Cr(H₂O)]3+
[Fe(CN)6]4
[Co[HzO)6]3+
Transcribed Image Text:1st row Nomenculation [Pt(NH3)4(OH)2]SO4 [Pt(NH3)4][PtBr4] [Pt(NH3)4][CuCl4] [Co(NH3)4Brz]CI [Cr(NH3)6][Co(CN)6] K3[Fe(Ox)3] Na3[Co(NO₂)6] 2nd row Isomerism, EAN Cl [Co(NO₂)(SCN) (en)2] [Co(NH3)4Cl2]NO₂ [Co(en)2(NH3)CI]SO4 [Cr(H₂O)4(NO2) CI] Br [Co(en)2(NO₂)SCN] Br [Pt(NH3)3Cl3] Br [Co(NH3)sBr]SO4 M 3th row VBT, CFT, MOT, Jahn Teller [FeF6]³ [Mn(CN)6] [Cu(en)]2+ [Pd(NH3)6]4+ [Cr(H₂O)]3+ [Fe(CN)6]4 [Co[HzO)6]3+
5) Draw the orbital splitting diagram, calculate crystal field stabilization energy and indicate whether the
coordination compound gives coloured solutions or not according to the Crystal Field Theory (CFT) (3th row).
6) Draw the molecular orbital energy diagram of the coordination compound according to the Molecular Orbital
Theory (MOT) (3th row).
Transcribed Image Text:5) Draw the orbital splitting diagram, calculate crystal field stabilization energy and indicate whether the coordination compound gives coloured solutions or not according to the Crystal Field Theory (CFT) (3th row). 6) Draw the molecular orbital energy diagram of the coordination compound according to the Molecular Orbital Theory (MOT) (3th row).
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