A wave travels along a stretched string. A displacement-time graph is shown for two particles on the string. displacement 0 75 time/ms 30 30 45 a. Calculate the frequency of the wave. b. State the phase difference between the oscillations of the particles. c. The wavelength of the wave is 60 cm. State the smallest possible distance between the particles.
A wave travels along a stretched string. A displacement-time graph is shown for two particles on the string. displacement 0 75 time/ms 30 30 45 a. Calculate the frequency of the wave. b. State the phase difference between the oscillations of the particles. c. The wavelength of the wave is 60 cm. State the smallest possible distance between the particles.
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
Transcribed Image Text:A wave travels along a stretched string. A
displacement-time graph is shown for two particles on
the string.
displacement
0
75
time/ms
30
30
45
a.
Calculate the frequency of the wave.
b. State the phase difference between the
oscillations of the particles.
c. The wavelength of the wave is 60 cm. State the
smallest possible distance between the particles.
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