Identify the diatomic molecule(s) that have a **bond order of 1**.
Bond order formula: $$\text{Bond order} = \frac{N_b - N_a}{2}$$ where $N_b =$ number of electrons in bonding orbitals $N_a =$ number of electrons in antibonding orbitals.
1. B₂
Total electrons = 10. MO configuration (for Z < 8): $$\sigma_{2s}^2 \sigma_{2s}^*{}^2 (\pi_{2p_x}^1 = \pi_{2p_y}^1)$$ Bond order: $$\text{BO} = \frac{6 - 4}{2} = 1$$ ✔ B₂ has bond order **1**.
2. N₂^{2−}
N₂ has 14 electrons → N₂²⁻ has 16 electrons. N₂ MO filling gives: $$\text{BO} = 3 - 1 = 2$$ Bond order = **2**, not 1. ✘ Not correct.
3. Li₂
Total electrons = 6. MO configuration: $$\sigma_{1s}^2 \sigma_{1s}^*{}^2 \sigma_{2s}^2$$ Bond order: $$\text{BO} = \frac{2 - 0}{2} = 1$$ ✔ Li₂ has bond order **1**.
4. O₂^{2−}
O₂ has 16 electrons → O₂²⁻ has 18 electrons. Bond order of O₂ = 2 O₂⁻ = 1.5 O₂²⁻ = 1 ✔ O₂²⁻ has bond order **1**.
Correct molecules with bond order 1: B₂, Li₂, O₂²⁻
✔ Corresponding to options 1, 3 and 4.
What is the empirical formula of a compound containing 40% sulfur and 60% oxygen by mass?
Match the LIST-I with LIST-II.
Choose the correct answer from the options given below :
Which of the following molecules(s) show/s paramagnetic behavior?
$\mathrm{O}_{2}$
$\mathrm{N}_{2}$
$\mathrm{F}_{2}$
$\mathrm{S}_{2}$
Given below are two statements:
Statement I : The N-N single bond is weaker and longer than that of P-P single bond
Statement II : Compounds of group 15 elements in +3 oxidation states readily undergo disproportionation reactions.
In the light of above statements, 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 .............