- A${K_c} = \frac{{[{H_2}][{I_2}]}}{{[HI]}}$
- B${K_c} = \frac{{[{H_2}][{I_2}]}}{{[2HI]}}$
- C${K_c} = \frac{{[{H_2}][{I_2}]}}{{{{[HI]}^2}}}$
- ✓${K_c} = \frac{{{{[HI]}^2}}}{{[{H_2}][{I_2}]}}$
$K _{ C }$ for a reaction $aA + bB \rightleftharpoons cC + dD$
$\Rightarrow \frac{[ C ]^{ c }[ D ]^{ d }}{[ A ]^{ a }[ B ]^{ b }}$
So here $K _{ C }=\frac{[ HI ]^2}{\left[ H _2\right]\left[ I _2\right]}$
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Statement $I$ : The correct order of first ionization enthalpy values of $\mathrm{Li}, \mathrm{Na}, \mathrm{F}$ and $\mathrm{Cl}$ is $\mathrm{Na}<\mathrm{Li}<\mathrm{Cl}<\mathrm{F}$.
Statement $II$ : The correct order of negative electron gain enthalpy values of $\mathrm{Li}, \mathrm{Na}, \mathrm{F}$ and $\mathrm{Cl}$ is $\mathrm{Na}<\mathrm{Li}<\mathrm{F}<\mathrm{Cl}$
In the light of the above statements, choose the correct answer from the options given below :