MCQ
A wire of density $9 \times 10^3 \,kg/m^3$ is stretched between two clamps one meter  apart and is subjected to an extension of $4.9 \times 10^{-4} \,m$. What will be the  lowest frequency of the transverse vibrations in the wire ... $Hz$ $[Y = 9 \times 10^{10} \,N/m^2]$ ?
  • A
    $38$
  • B
    $36$
  • $35$
  • D
    $32$

Answer

Correct option: C.
$35$
c
$Y = \frac{{T/\pi {r^2}}}{{\Delta \ell /\ell }} = \frac{{T\ell }}{{{\pi ^2}\Delta \ell }} \Rightarrow T = \frac{{Y\pi {r^2}\Delta \ell }}{\ell }$

$V=\sqrt{\frac{T}{m}}=\sqrt{\frac{Y \pi r^{2} \Delta \ell}{\pi r^{2} d \ell}}=\sqrt{\frac{Y \Delta \ell}{\ell d}}=70 \mathrm{\,m} / \mathrm{s}$

Lowest Frequency $=\frac{V}{2 \ell}=\frac{70}{2}=35 \mathrm{\,Hz}$

Need a full question paper?

Generate a complete, print-ready paper with questions like this in minutes — across 16+ boards, with answer keys.

Start Generating Free

Similar questions

Consider the following statements. The total energy of a particle executing simple harmonic motion depends on its

$(1)$ Amplitude      $(2) $ Period         $(3)$ Displacement

Of these statements

Let $\overrightarrow A = \hat iA\,\cos \theta + \hat jA\,\sin \theta $ be any vector. Another vector $\overrightarrow B $ which is normal to $\overrightarrow A$ is
A solid cylinder rolls down an inclined plane from a height $h$. At any moment the ratio of rotational kinetic energy to the total kinetic energy would be 
A metallic sphere having mass $2\ kg$ is moving with a velocity of $10\ m/ s.$ The momentum of the sphere in $\ce{kg metre/ sec.}$ will be$-$
Figure. shows the $P-V$ diagram of an ideal gas undergoing a change of state from $A$ to $B$. Four different parts $\text{I, II, III}$ and $\text{IV}$ as shown in the figure may lead to the same change of state.

 
A right circular cylinder has a mass $m$, radius $r$, and a height $h$. The cylinder is completely submerged in a fluid of density $\rho$, as shown in the diagram. What is the magnitude of the net force on the cylinder?
Given below are two statements :

Statement-I: When a capillary tube is dipped into a liquid, the liquid neither rises nor falls in the capillary. The contact angle may be $0^{\circ}$.

Statement-II: The contact angle between a solid and a liquid is a property of the material of the solid and liquid as well :

In the light of above statement, choose the correct answer from the options given below.

A body sliding on a smooth inclined plane requires $4$ seconds to reach the bottom starting from rest at the top. How much time does it take to cover one-fourth distance starting from rest at the top.............$s$
A ball is thrown at an angle $\theta$ with the horizontal. Its horizontal range is equal to its maximum height. This is possible only when the value of $\tan \theta$ is ..........
Calculate the work done, if a wire is loaded by $'Mg'$ weight and the increase in length is $'l'$