Match the Thermodynamic laws in Column $\text{I}$ with the description given in Column $\text{II}$
| ${\text{Column I}}$ | ${\text{Column II}}$ |
| $\text{P}$ | Zeroth law | $1$ | Entropy of a perfect crystal at $0$ $\mathrm{K}$ is zero |
| $\text{Q}$ | First law | $2$ | Introduces Entropy |
| $\text{R}$ | Second law | $3$ | Defines thermal equilibrium |
| $\text{S}$ | Third law | $4$ | Defines internal energy |
- $\mathrm{P} \rightarrow 3 ; \mathrm{Q} \rightarrow 4 ; \mathrm{R} \rightarrow 2 ; \mathrm{S} \rightarrow 1$
- $\mathrm{P} \rightarrow 1 ; \mathrm{Q} \rightarrow 2 ; \mathrm{R} \rightarrow 4 ; \mathrm{S} \rightarrow 3$
- $\mathrm{P} \rightarrow 1 ; \mathrm{Q} \rightarrow 4 ; \mathrm{R} \rightarrow 3 ; \mathrm{S} \rightarrow 2$
- $\mathrm{P} \rightarrow 3 ; \mathrm{Q} \rightarrow 1 ; \mathrm{R} \rightarrow 2 ; \mathrm{S} \rightarrow 4$