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The CFSE for octahedral [CoCl(6)]^(4-) ...

The CFSE for octahedral `[CoCl_(6)]^(4-)` is `18000cm^(-1)`. The CFSE for tetrahedral `[CoCl_(4)]^(2-)` will be -

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The CFSE for octahedral [CoCl_(6)]^(4-) is 18,000 cm^(-1) . The CFSE for tetrahedral [CoCl_(4)]^(2-) will be

The CFSE for octahedral [CoCl_(6)]^(4-) is 18,000 cm^(-1) . The CFSE for tetrahedral [CoCl_(4)]^(2-) will be

The CFSE for octahedral [CoCl_(6)]^(4-) is 18,000 cm^(-1) . The CFSE for tetrahedral [CoCl_(4)]^(2-) will be

Read the passage given below and answer the following questions : The crystal field theory (CFT) is an electrostatic model which considers the metal-ligand bond to be ionic arising purely from electrostatic interactions between the metal ion and the ligand. Ligands are treated as point charges in case of anions or dipoles in case of neutral molecules. The five d orbitals in an isolated gaseous metal atom/ion have same energy, i.e., they are degenerate. This degeneracy is maintained if a spherically symmetrical field of negative charges surrounds the metal atom/ ion. However, when this negative field is due to ligands (either anions or the negative ends of dipolar molecules like NH_(3) and H_(2)O ) in a complex, it becomes asymmetrical and the degeneracy of the d orbitals is lifted. It results in splitting of the d orbitals. The CFSE for octahedral [CoCl_(6)]^(4-) is 18,000 cm^(-1) . The CFSE for tetrahedral [CoCl_(4)]^(2-) will be