What is the spectrochemical series? Explain the difference between a weak field ligand and a strong field ligand.

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(N/A) spectrochemical series is an arrangement of common ligands in the increasing order of their crystal-field splitting energy $(CFSE)$ values.
Ligands on the right-hand side $(R.H.S.)$ of the series are strong field ligands,while those on the left-hand side $(L.H.S.)$ are weak field ligands.
Strong field ligands cause greater splitting of the $d$-orbitals compared to weak field ligands.
The series is: $I^{-} < Br^{-} < S^{2-} < SCN^{-} < Cl^{-} < N_{3}^{-} < F^{-} < OH^{-} < C_{2}O_{4}^{2-} \approx H_{2}O < NCS^{-} < H^{-} < CN^{-} < NH_{3} < en \approx SO_{3}^{2-} < NO_{2}^{-} < phen < CO$.

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Similar Questions

Match List-$I$ with List-$II$:
List-$I$ (Complex) List-$II$ ($CFSE$ in $\Delta_0$)
$A$. $[Cu(NH_3)_6]^{2+}$ $I$. $-0.6$
$B$. $[Ti(H_2O)_6]^{3+}$ $II$. $-2.0$
$C$. $[Fe(CN)_6]^{3-}$ $III$. $-1.2$
$D$. $[NiF_6]^{4-}$ $IV$. $-0.4$

Choose the correct answer from the options given below:

What is the correct electronic configuration of the central atom in $K_{4}[Fe(CN)_{6}]$ based on crystal field theory?

Among the following $Cr(III)$ complexes,which one will have the highest octahedral crystal field splitting?

Which of the following statements is not applicable to Valence Bond Theory?

The metal $d-$orbitals that directly face the ligands in $K_3[Co(CN)_6]$ are:

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