Step 1: Apply the ideal gas law and isothermal condition.
Total initial moles: \[ n_1 = \frac{P \times 5V}{RT} + \frac{8P \times V}{RT} = \frac{13PV}{RT}. \] Since the process is isothermal and the volume after the piston is free is \(6V\): \[ P_{final} \times 6V = \frac{13PV}{RT} \times RT. \] Step 2: Calculate the final pressure. \[ P_{final} = \frac{13P}{6}. \]
Find the least horizontal force \( P \) to start motion of any part of the system of three blocks resting upon one another as shown in the figure. The weights of blocks are \( A = 300 \, {N}, B = 100 \, {N}, C = 200 \, {N} \). The coefficient of friction between \( A \) and \( C \) is 0.3, between \( B \) and \( C \) is 0.2 and between \( C \) and the ground is 0.1.