For the wave in the previous question, that was moving at 250250 m/s up, if the tension in the string is 15001500 N, what is the linear mass density of the string in kg/m?
Question
For the wave in the previous question, that was moving at 250250 m/s up, if the tension in the string is 15001500 N, what is the linear mass density of the string in kg/m?
Solution
The question seems to be missing some context, but I can explain how to find the linear mass density of a string given the wave speed and the tension in the string.
The wave speed (v) on a string under tension (T) is given by the formula:
v = sqrt(T/μ)
where μ is the linear mass density of the string.
We can rearrange this formula to solve for μ:
μ = T/v²
Given that the wave speed v is 250250 m/s and the tension T is 15001500 N, we can substitute these values into the formula:
μ = 15001500 N / (250250 m/s)²
Calculate the value to find the linear mass density of the string in kg/m.
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