\([ \text{Ir(CN)}_6 ]^{3-} < [ \text{Rh(CN)}_6 ]^{3-} < [ \text{RhI}_6 ]^{3-} < [ \text{CoI}_6 ]^{3-} \)
\([ \text{CoI}_6 ]^{3-} < [ \text{RhI}_6 ]^{3-} < [ \text{Rh(CN)}_6 ]^{3-} < [ \text{Ir(CN)}_6 ]^{3-} \)
\([ \text{CoI}_6 ]^{3-} < [ \text{Rh(CN)}_6 ]^{3-} < [ \text{RhI}_6 ]^{3-} < [ \text{Ir(CN)}_6 ]^{3-} \)
\([ \text{Ir(CN)}_6 ]^{3-} < [ \text{CoI}_6 ]^{3-} < [ \text{Rh(CN)}_6 ]^{3-} < [ \text{RhI}_6 ]^{3-} \)
Crystal field splitting (Δₒ) in octahedral complexes:
Δₒ depends on:
1. Metal identity: 3d < 4d < 5d (increases down the group)
2. Ligand strength (spectrochemical series): Weak field < Strong field
3. Oxidation state: Higher oxidation state → larger Δₒ
Spectrochemical series (relevant ligands):
I⁻ < Cl⁻ < CN⁻
Analyzing the complexes:
[Ir(CN)₆]³⁻:
- Ir³⁺ (5d⁶, third row transition metal)
- CN⁻ (strongest field ligand)
- Very large Δₒ
[Rh(CN)₆]³⁻:
- Rh³⁺ (4d⁶, second row transition metal)
- CN⁻ (strongest field ligand)
- Large Δₒ (but less than Ir³⁺)
[RhI₆]³⁻:
- Rh³⁺ (4d⁶, second row)
- I⁻ (weakest field ligand among these)
- Small Δₒ
[CoI₆]³⁻:
- Co³⁺ (3d⁶, first row transition metal)
- I⁻ (weakest field ligand)
- Smallest Δₒ
[RhCl₆]³⁻:
- Rh³⁺ (4d⁶, second row)
- Cl⁻ (intermediate field ligand)
- Moderate Δₒ (larger than I⁻, smaller than CN⁻)
Ordering from smallest to largest Δₒ:
1. [CoI₆]³⁻ - 3d metal, weakest ligand
2. [RhI₆]³⁻ - 4d metal, weakest ligand (larger than Co³⁺)
3. [RhCl₆]³⁻ - 4d metal, intermediate ligand (Cl⁻ > I⁻)
4. [Rh(CN)₆]³⁻ - 4d metal, strongest ligand
5. [Ir(CN)₆]³⁻ - 5d metal, strongest ligand (largest)
Answer: (B)
The metal ions that have the calculated spin only magnetic moment value of 4.9 B.M. are
A. $ Cr^{2+} $
B. $ Fe^{2+} $
C. $ Fe^{3+} $
D. $ Co^{2+} $
E. $ Mn^{2+} $
Choose the correct answer from the options given below
One mole of a monoatomic ideal gas starting from state A, goes through B and C to state D, as shown in the figure. Total change in entropy (in J K\(^{-1}\)) during this process is ............... 
The number of chiral carbon centers in the following molecule is ............... 
A tube fitted with a semipermeable membrane is dipped into 0.001 M NaCl solution at 300 K as shown in the figure. Assume density of the solvent and solution are the same. At equilibrium, the height of the liquid column \( h \) (in cm) is ......... 
An electron at rest is accelerated through 10 kV potential. The de Broglie wavelength (in A) of the electron is .............