| Southward Displacement \( (s_s) \): | \( s_s = v_s \cdot t = 8 \cdot 3 = 24 \text{ m} \) |
| Eastward Displacement \( (s_e) \): | Using the equation \( s = ut + \frac{1}{2}at^2 \) where initial velocity \( u = 0\): \( s_e = 0 \cdot 3 + \frac{1}{2}(4)(3)^2 = \frac{1}{2} \cdot 4 \cdot 9 = 18 \text{ m} \) |
In the given circuit, the electric currents through $15\, \Omega$ and $6 \, \Omega$ respectively are

Where will be the maximum rise in temperature if a body is heated?
A block (\(P\)) is rotating in contact with the vertical wall of a rotor as shown in figures A, B, C. The relation between angular velocities \( \omega_A, \omega_B, \omega_C \) so that the block does not slide down. (Given: \( R_A < R_B < R_C \), where \( R \) denotes radius)

What is the height from the surface of earth, where acceleration due to gravity will be \( \frac{1}{4} \) of that of the earth? (Re = 6400 km)