Troubleshooting Wave Velocity on a Piano Wire

In summary, wave velocity is the speed at which a wave travels through a medium, such as a piano wire. It is important in troubleshooting as it can indicate potential issues with the wire's tension or composition. To measure wave velocity, a high-speed camera or strobe light and ruler can be used. Factors such as tension, composition, and temperature can affect wave velocity on a piano wire. Troubleshooting issues with wave velocity involves checking tension and consulting a professional if necessary. Altering the wave velocity can also change the sound produced by the piano wire, but should only be done with the guidance of a professional.
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Homework Statement
Joe Edison has a great idea for an invention: he'll transmit power across the city without electricity -by using pianos. If a piano wire stretches from each apartment to the power station, then a worker can play a piano in the station, sending a disturbance along the wire and into each home. A simple device can then convert the disturbance into useful energy ...

To test his idea, Joe sets up a miniature model. He starts with a piece of piano wire of length L=1.6 m and mass m=7 grams. He stretches the wire on a truss so that it has a tension T=280 Newtons. Joe then repeatedly whacks one end of the wire, creating a wave of amplitude 2 mm in height and angular frequency 50 radians per second.

What is the speed at which the wave runs down the wire?

What is the rate at which energy is transmitted down the wire? Express your answer in Joules per second.
Relevant Equations
power= (1/2)(velocity)(mass length)(angular frequency)^2 (amplitude)^2
angular frequency= 50 rad/s= 2*pi*frequency
frequency= 7.96 Hz

k=2*pi/wavelength
k=2*pi/(2*1.6m) = 1.96
velocity=angular frequency/ k
velocity=50/ 1.96 = 25.5 m/s
For some reason this velocity is wrong
 
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  • #2
That would all be correct IF the wave was the fundamental oscillation of the wire. (your assumption that the wavelength is 2*L) It is not. You need to find the velocity based on the given properties of the wire. You will find the velocity is much higher and the wavelength is much shorter.
 

Related to Troubleshooting Wave Velocity on a Piano Wire

1. How do I determine the wave velocity on a piano wire?

To determine the wave velocity on a piano wire, you will need to know the tension, length, and mass per unit length of the wire. You can then use the formula v = √(T/μ), where v is the wave velocity, T is the tension, and μ is the mass per unit length. You may also need to consider the diameter of the wire and the temperature, as these can affect the velocity as well.

2. What factors can affect the wave velocity on a piano wire?

The wave velocity on a piano wire can be affected by tension, length, mass per unit length, diameter, and temperature. Changes in any of these factors can alter the velocity of the waves traveling through the wire.

3. How can I troubleshoot a slow wave velocity on a piano wire?

If you are experiencing a slower than expected wave velocity on a piano wire, there may be several factors at play. First, check the tension of the wire and make sure it is within the recommended range for the wire. Next, make sure the wire is the correct length and diameter for the desired wave velocity. Finally, consider the temperature and make sure it is within the recommended range for the wire.

4. Can changes in tension affect the wave velocity on a piano wire?

Yes, changes in tension can affect the wave velocity on a piano wire. As tension increases, the wave velocity also increases. This is because a higher tension means a higher restoring force, which allows the waves to travel faster through the wire.

5. What should I do if I am unable to achieve the desired wave velocity on a piano wire?

If you are unable to achieve the desired wave velocity on a piano wire, you may need to adjust the tension, length, or diameter of the wire. You may also need to consider using a different type of wire with a different mass per unit length. Additionally, make sure the temperature is within the recommended range and check for any other possible sources of interference or error.

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