Crystal field stabilization energy $(CFSE)$ for the complex $[Co(CN)_6]^{3-}$ will be:

  • A
    $-2.4 \, \Delta_0 + 3P$
  • B
    $+2.4 \, \Delta_0 + 3P$
  • C
    $-3.6 \, \Delta_0 + 3P$
  • D
    $-1.8 \, \Delta_0 + 3P$

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For which of the following types of ions is the number of unpaired electrons in octahedral complexes fixed at the same number as in the free ion,no matter how weak or strong the crystal field is?

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$A$ strong field ligand gives a complex which is generally called:

The correct order of the following complexes in terms of their crystal field stabilization energies $(CFSE)$ is:

Given below are two statements,one is labelled as Assertion $A$ and the other is labelled as Reason $R$.
Assertion $A$: $[CoCl(NH_3)_5]^{2+}$ absorbs at a lower wavelength of light with respect to $[Co(NH_3)_5(H_2O)]^{3+}$.
Reason $R$: It is because the wavelength of the light absorbed depends on the oxidation state of the metal ion.
In the light of the above statements,choose the correct answer from the options given below:

In the octahedral crystal field,the correct order of splitting for $I^{-}, H_2O, NH_3$ and $CN^{-}$ ligands is:

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