Based on the Molecular Orbital Theory,which of the following is the correct electronic configuration of the nitrogen molecular ion $N_2^+$?

  • A
    $\sigma 1s^2 \sigma^* 1s^2 \sigma 2s^2 \sigma^* 2s^2 \pi 2p_x^2 \pi 2p_y^2 \sigma 2p_z^1$
  • B
    $\sigma 1s^2 \sigma^* 1s^2 \sigma 2s^2 \sigma^* 2s^2 \sigma 2p_z^2 \pi 2p_x^2 \pi 2p_y^1$
  • C
    $\sigma 1s^2 \sigma^* 1s^2 \sigma 2s^2 \sigma^* 2s^2 \pi 2p_x^2 \pi 2p_y^2 \sigma 2p_z^2$
  • D
    $\sigma 1s^2 \sigma^* 1s^2 \sigma 2s^2 \sigma^* 2s^2 \sigma 2p_z^1 \pi 2p_x^2 \pi 2p_y^2$

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Similar Questions

Which among the following have diamagnetic property?
$(i)$ $B_2$
$(ii)$ $N_2$
$(iii)$ $O_2$
$(iv)$ $C_2$

Match List-$I$ with List-$II$.
List-$I$ List-$II$
$A$. $\Psi_{MO} = \Psi_{A} - \Psi_{B}$ $I$. Dipole moment
$B$. $\mu = Q \times r$ $II$. Bonding molecular orbital
$C$. $\frac{N_{b} - N_{a}}{2}$ $III$. Anti-bonding molecular orbital
$D$. $\Psi_{MO} = \Psi_{A} + \Psi_{B}$ $IV$. Bond order

Which of the following concepts is $NOT$ part of the valence bond theory $(VBT)$?

The pairs of species of oxygen and their magnetic behaviour are noted below. Which of the following presents the correct description?

The $\pi$ bond between $Cl$ and $O$ in $ClO_4^-$ is formed by the overlapping of . . . . . . orbitals.

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