Step 1: Recall formula for shear modulus.
Shear modulus is related to shear wave velocity as:
\[
G = \rho V_s^2
\]
Step 2: Explanation.
- $V_s = \sqrt{\dfrac{G}{\rho}}$ (wave velocity formula)
- Rearranging gives $G = \rho V_s^2$.
Step 3: Conclusion.
Thus, the correct formula is $\rho V_s^2$.
A weight of $500\,$N is held on a smooth plane inclined at $30^\circ$ to the horizontal by a force $P$ acting at $30^\circ$ to the inclined plane as shown. Then the value of force $P$ is:
A steel wire of $20$ mm diameter is bent into a circular shape of $10$ m radius. If modulus of elasticity of wire is $2\times10^{5}\ \text{N/mm}^2$, then the maximum bending stress induced in wire is: