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An air columnis constructed by fitting a...

An air columnis constructed by fitting a movable piston in along cylindrical tube. Longitudinal waves are sent in the tube by as tunning fork of frequency 416 Hz. How far from the open end should the piston, be so that the air column in the tube may vibrate in its fitst overtone? Speed of soud in air is `333ms^-1`.

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An air column is constructed by fitting a movable piston in along cylindrical tube. Longitudinal waves are sent in the tube by as tuning fork of frequency 416 Hz. How far from the open end should the piston, be so that the air column in the tube may vibrate in its first overtone? Speed of sound in air is 333ms^-1 .

A cylindrical metal tube has a length of 50 cm and is open at both ends. Find the frequencies between 1000 Hz and 2000 Hz at which the air column in the tube can resonate. Speed of sound in air is 340 m s^-1 .

A cylindrical metal tube has a length of 50 cm and is open at both ends. Find the frequencies between 1000 Hz and 2000 Hz at which the air column in the tube can resonate. Speed of sound in air is 340 m s^-1 .

A cylindrical metal tube has a length of 50 cm and is open at both ends. Find the frequencies between 1000 Hz and 2000 Hz at which the air column in the tube can resonate. Speed of sound in air is 340 m s^-1 .

The air column in a pipe closed at one end is made to vibrate in its second overtone by a tuning fork of frequency 440 Hz. The speed of sound in air is 330 m/s. find the length of air column.

The air column in a pipe closed at one end is made to vibrate in its second overtone by a tuning fork of frequency 440 Hz. The speed of sound in air is 330 m/s. find the length of air column.

Assume velocity of sound in air as 333.68 ms^-1 . A hollow brass tube is placed vertically in a jar containing water. Air in the tube is vibrated by a tuning fork of frequency 338 Hz. Neglect end correction. Second resonance is obtained when the length of air column in the brass tube is

A cylindrical tube open at both the ends has a fundamental frequency of 390 Hz in air. If 1/4 th of the tube is immesed vertically in water the fundamental frequency of air column is

A cylindrical tube open at both the ends has a fundamental frequency of 390 Hz in air. If 1/4 th of the tube is immesed vertically in water the fundamental frequency of air column is

In a long cylindrical tube , the water level is adjusted and the air column above it is made to vibrate in unison with a vibrating tuning fork kept at the open end . Maximum sound is heard when the air column lengths are equal to