Step 1: The dimensional formula of Force is \[ {Force} = MLT^{-2} \] Step 2: The dimensional formula of Volume is \[ {Volume} = L^3 \] Step 3: From the equation \[ X = {Force} \times {Volume} \] \[ X = (MLT^{-2}) \times (L^3) = ML^4T^{-2} \] Step 4: Therefore, the correct answer is (E).
Match the LIST-I with LIST-II: 
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Match the LIST-I with LIST-II 
Choose the correct answer from the options given below:
A temperature difference can generate e.m.f. in some materials. Let $ S $ be the e.m.f. produced per unit temperature difference between the ends of a wire, $ \sigma $ the electrical conductivity and $ \kappa $ the thermal conductivity of the material of the wire. Taking $ M, L, T, I $ and $ K $ as dimensions of mass, length, time, current and temperature, respectively, the dimensional formula of the quantity $ Z = \frac{S^2 \sigma}{\kappa} $ is: