1. Determine the electronic configuration and geometry for each species:
- \([\text{Ni(CN)}_4]^{2-}: \text{Ni}^{2+} \, (3d^8) \, \text{in a strong field ligand, forms a square planar complex.} \, \text{No unpaired electrons. (Diamagnetic)}\)
- \([\text{Ni(CO)}_4]: \text{Ni}^{0} \, (3d^8 4s^2) \, \text{in a strong field ligand, forms a tetrahedral complex.} \, \text{No unpaired electrons. (Diamagnetic)}\)
- \([\text{NiCl}_4]^{2-}: \text{Ni}^{2+} \, (3d^8) \, \text{in a weak field ligand, forms a tetrahedral complex.} \, \text{2 unpaired electrons. (Paramagnetic)}\)
- \([\text{Fe(CN)}_6]^{3-}: \text{Fe}^{3+} \, (3d^5) \, \text{in a strong field ligand, forms a low-spin octahedral complex.} \, \text{1 unpaired electron. (Paramagnetic)}\)
- \([\text{Cu(NH}_3)_4]^{2+}: \text{Cu}^{2+} \, (3d^9) \, \text{1 unpaired electron. (Paramagnetic)}\)
- \([\text{Fe(H}_2\text{O)}_6]^{2+}: \text{Fe}^{2+} \, (3d^6) \, \text{in a weak field ligand, forms a high-spin octahedral complex.} \, \text{4 unpaired electrons. (Paramagnetic)}\)
2. Count the paramagnetic species:
Paramagnetic species: \([\text{NiCl}_4]^{2-}, [\text{Fe(CN)}_6]^{3-}, [\text{Cu(NH}_3)_4]^{2+}, [\text{Fe(H}_2\text{O)}_6]^{2+}\).
Total = 4 species. Thus, the number of paramagnetic species is 4.
Paramagnetic species have unpaired electrons, determined by ligand field strength and electron configurations. Strong field ligands like CN\(^-\) and CO lead to low-spin complexes, while weak field ligands like Cl\(^-\) and H\(_2\)O result in high-spin complexes.
What will be the equilibrium constant of the given reaction carried out in a \(5 \,L\) vessel and having equilibrium amounts of \(A_2\) and \(A\) as \(0.5\) mole and \(2 \times 10^{-6}\) mole respectively?
The reaction : \(A_2 \rightleftharpoons 2A\)

Cobalt chloride when dissolved in water forms pink colored complex $X$ which has octahedral geometry. This solution on treating with cone $HCl$ forms deep blue complex, $\underline{Y}$ which has a $\underline{Z}$ geometry $X, Y$ and $Z$, respectively, are
The total number of molecular orbitals formed from 2s and 2p atomic orbitals of a diatomic molecule is _________.
What will be the equilibrium constant of the given reaction carried out in a \(5 \,L\) vessel and having equilibrium amounts of \(A_2\) and \(A\) as \(0.5\) mole and \(2 \times 10^{-6}\) mole respectively?
The reaction : \(A_2 \rightleftharpoons 2A\)
Such a group of atoms is called a molecule. Obviously, there must be some force that holds these constituent atoms together in the molecules. The attractive force which holds various constituents (atoms, ions, etc.) together in different chemical species is called a chemical bond.
There are 4 types of chemical bonds which are formed by atoms or molecules to yield compounds.