Home
Class 11
PHYSICS
[" The length of the wire shown in figur...

[" The length of the wire shown in figure "(15-E8)" between "],[" the pulley is "1.5m" and its mass is "12.0g" .Find the "],[" frequency of vibration with which the wire vibrates in "],[" two loops leaving the middle point of the wire between "],[" the pulleys at rest."]

Promotional Banner

Similar Questions

Explore conceptually related problems

The length of the wire shown in figure between the pulley is 1.5 m and its mass is 12.0 g. Find the frequency of vibration with which the wire vibrates in two loops leaving the middle point of the wire between the pulleys at rest.

The length of the wire shown in figure between the pulley is 1.5 m and its mass is 12.0 g. Find the frequency of vibration with which the wire vibrates in two loops leaving the middle point of the wire between the pulleys at rest.

The length of the wire shown in figure between the pulley is 1.5 m and its mass is 12.0 g. Find the frequency of vibration with which the wire vibrates in two loops leaving the middle point of the wire between the pulleys at rest.

The length of the wire shown in figure between the pulleys is 1.5m and its mass is 12.0g. Find the frequency of vibration with which the wire vibrates in owo loops leaving the middle point of the wire between the pulleys at rest.

The length of the wire shown in figure between the pulleys is 1.5 m and its mass is 15 g. what is the frequency of vibration with which the wire vibrates in four loops leaving the middle point of the wire between the pullys at rest ? (g=10 ms^(2))

The length of the wire shown in figure between the pulleys is 1.5 m and its mass is 15 g. what is the frequency of vibration with which the wire vibrates in four loops leaving the middle point of the wire between the pullys at rest ? (g=10 ms^(2))

The length of the wire shown in the figure between the pulleys is 1.5m and its mass is 12.0g. The frequency of vibration with which the wire vibrates in three loops forming antinode at the mid point of the wire is - (Take g=9.8 m//s^2 )

The length of the wire shown in Fig. Between the pulley and fixed support is 1.5m and mass is 12.0g the frequency of vibration with which the wire vibrate two loops leaving the middle point of the wire between the pulleys at rest is

A wire is under a tension of 32N and length between the two bridges in 1m. If the length of the sample wire is 10m and its mass is 2 g, then the fundamental frequency of the wire will be