54 Go Two sinusoidal waves with the same amplitude and wavelength travel through each other along a string that is stretched along an x axis. Their A 100 resultant wave is shown twice in Fig. 16-41, as the antinode A travels from an extreme up- ward displacement to an ex- treme downward displacement in 6.0 ms. The tick marks along the axis are separated by 10 cm; height H is 1.80 cm. Let the equation for one of the two waves be of the form y(x, 1) = ym sin(kx + wt). In the equation for the other wave, what are (a) y (b) k, (c) w, and (d) the sign in front of w? Figure 16-41 Problem 54.

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Chapter1: Units, Trigonometry. And Vectors
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54 Go Two sinusoidal waves
with the same amplitude and
wavelength travel through each
other along a string that is
stretched along an x axis. Their
A
100
resultant wave is shown twice
in Fig. 16-41, as the antinode A
travels from an extreme up-
ward displacement to an ex-
treme downward displacement
in 6.0 ms. The tick marks along
the axis are separated by 10 cm; height H is 1.80 cm. Let the equation
for one of the two waves be of the form y(x, 1) = ym sin(kx + wt). In
the equation for the other wave, what are (a) y (b) k, (c) w, and (d)
the sign in front of w?
Figure 16-41 Problem 54.
Transcribed Image Text:54 Go Two sinusoidal waves with the same amplitude and wavelength travel through each other along a string that is stretched along an x axis. Their A 100 resultant wave is shown twice in Fig. 16-41, as the antinode A travels from an extreme up- ward displacement to an ex- treme downward displacement in 6.0 ms. The tick marks along the axis are separated by 10 cm; height H is 1.80 cm. Let the equation for one of the two waves be of the form y(x, 1) = ym sin(kx + wt). In the equation for the other wave, what are (a) y (b) k, (c) w, and (d) the sign in front of w? Figure 16-41 Problem 54.
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