According to Molecular Orbital Theory (M.O.T.):
For \( O_2 \):
Number of unpaired electrons = 2
For \( O_2^{1-} \):
Number of unpaired electrons = 1
For NO:
Number of unpaired electrons = 1
For \( CN^- \):
Number of unpaired electrons = 0
For \( O_2^{2-} \):
Number of unpaired electrons = 0
Therefore, the number of species having exactly one unpaired electron is 2 (\( O_2^{1-} \) and NO).
| List-I Tetrahedral Complex | List-II Electronic configuration |
|---|---|
| (A) TiCl4 | (I) e2, t20 |
| (B) [FeO4]2- | (II) e4, t23 |
| (C) [FeCl4]- | (III) e0, t22 |
| (D) [CoCl4]2- | (IV) e2, t23 |
A conducting bar moves on two conducting rails as shown in the figure. A constant magnetic field \( B \) exists into the page. The bar starts to move from the vertex at time \( t = 0 \) with a constant velocity. If the induced EMF is \( E \propto t^n \), then the value of \( n \) is _____. 