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Arisa [49]
4 years ago
4

Transverse waves are traveling on a long string that is under a tension of 10.0 N. The equation describing these waves is y(x,t)

=( 6.05 cm)sin[( 435 s−1)t−( 45.1 m−1)x]. Find the linear mass density of this string.
Physics
1 answer:
Alekssandra [29.7K]4 years ago
4 0

Answer:

μ = 0.108 kg/m

Explanation:

Given that

Tension ,T= 10 N

y(x,t)=( 6.05 cm)sin[( 435 s−1)t−( 45.1 m−1)x]

Standard form

Y(x,t)=A sin[ωt−k x]

By compare ,we can say that

ω = 435 s⁻¹

We know that   ω = 2 π f

f=\dfrac{\omega}{2\pi }

f=\dfrac{435}{2\pi }\ Hz

f=69.23  Hz

k = 45.1 m⁻¹

We know that

\lambda =\dfrac{2 \pi}{k}

\lambda =\dfrac{2 \pi}{45.1}

λ =0.139  m

We know that the velocity given as

V = f λ

V= 0.139 x 69.23 m/s

V= 9.6 m/s

The linear mass density given as

\mu=\dfrac{T}{V^2}\ kg/m

\mu=\dfrac{10}{9.6^2}\ kg/m

μ = 0.108 kg/m

This is the mass density.

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