The frequency $(v)$ of an oscillating liquid drop may depend upon the radius $(r)$ of the drop,the density $(\rho)$ of the liquid,and the surface tension $(s)$ of the liquid as: $v = r^{a} \rho^{b} s^{c}$. The values of $a, b,$ and $c$ respectively are:

  • A
    $(-\frac{3}{2}, -\frac{1}{2}, \frac{1}{2})$
  • B
    $(\frac{3}{2}, -\frac{1}{2}, \frac{1}{2})$
  • C
    $(\frac{3}{2}, \frac{1}{2}, -\frac{1}{2})$
  • D
    $(-\frac{3}{2}, \frac{1}{2}, \frac{1}{2})$

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