A transverse wave can be produced on a stretched string. In this type of wave, the motion of the particles of the medium is perpendicular to the direction of the wave propagation.
the wave produced in a stretched string will be a standing wave .it will have a node and antinode.node means point with zero displacement and antinode means point with maximum displacement
yes, Its possible to have a longitudinal wave on a stretched string by stroking it along its length by a rosined cloth. However, in the wave motion of a stretched string ( tant string with fixed ends) wave (disturbance) produced at one fixed end travels along the length of the string and get reflected back at the other end. Since the original wave and the reflected wave have the same frequency and amplitude, they superimpose to produce stationary transverse disturbance.
The type of wave produced when a string in a sitar vibrates is a transverse wave. This means that the particles of the medium (like air) move perpendicular to the direction of the wave's propagation as the sound travels through the material.
Transverse stationary waves are produced in a stretched string by the interference of two waves of the same frequency traveling in opposite directions along the string. This interference causes certain points on the string, called nodes and antinodes, to appear stationary as they oscillate in place. The specific frequencies that can form stationary waves are determined by the length and tension of the string.
Stationary transverse waves are produced on strings. This is due to the superimposition of the progressive wave and its reflection at the knife edges.
the wave produced in a stretched string will be a standing wave .it will have a node and antinode.node means point with zero displacement and antinode means point with maximum displacement
yes, Its possible to have a longitudinal wave on a stretched string by stroking it along its length by a rosined cloth. However, in the wave motion of a stretched string ( tant string with fixed ends) wave (disturbance) produced at one fixed end travels along the length of the string and get reflected back at the other end. Since the original wave and the reflected wave have the same frequency and amplitude, they superimpose to produce stationary transverse disturbance.
The type of wave produced when a string in a sitar vibrates is a transverse wave. This means that the particles of the medium (like air) move perpendicular to the direction of the wave's propagation as the sound travels through the material.
Transverse stationary waves are produced in a stretched string by the interference of two waves of the same frequency traveling in opposite directions along the string. This interference causes certain points on the string, called nodes and antinodes, to appear stationary as they oscillate in place. The specific frequencies that can form stationary waves are determined by the length and tension of the string.
Stationary transverse waves are produced on strings. This is due to the superimposition of the progressive wave and its reflection at the knife edges.
Bass instruments are basically string instruments. Do this tie both ends of a string in such a way that the string it tight or stretched. Now pull the string down from the middle and leave it. Now pull the string down at 1/4 distance from any end. Next do it from 1/8 th distance. As the distance decreases the number of waves produced in the string increases. At 1/2 the distance . This is how the wave is formed in bass instruments.
A wave performed with a string is called a "transverse wave." In this type of wave, the particles of the medium move perpendicular to the direction of the wave's propagation.
Stationary transverse waves are produced on strings. This is due to the superimposition of the progressive wave and its reflection at the knife edges.
Compression wave
Every type of sound wave produced is a longitudinal wave.
No, a string wave is a mechanical wave that travels through a medium by the vibration of particles in the medium, while an electromagnetic wave is a wave that consists of oscillating electric and magnetic fields and can travel through a vacuum.
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