A sinusoidal transverse wave has a wavelength of 2.8 m. It takes 0.2 s for an element of the string at a position x to move from the maximum position of ymax = 0.03 m to the equilibrium position y = 0. What is the period of the wave, T, and the wave speed, v? O 0.4 sec; 7 m/s 0.8 sec; 14 m/s 0.8 sec; 3.5 m/s 0.4 sec; 28 m/s

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O y_1 (x,t)=1mm sin(2rx-20Ttt) and y_2 (x,t)=1mm sin(2rx+20rtt)
A sinusoidal transverse wave has a wavelength of 2.8 m. It takes 0.2 s for an element of the string at
a position x to move from the maximum position of ymax = 0.03 m to the equilibrium position y 0. What
is the period of the wave, T, and the wave speed, v?
0.4 sec; 7 m/s
O 0.8 sec; 14 m/s
O 0.8 sec; 3.5 m/s
0.4 sec; 28 m/s
A taut string fixed at both ends is driven by an oscillator at a constant frequency of 100 Hz. The amplitude
Transcribed Image Text:O y_1 (x,t)=1mm sin(2rx-20Ttt) and y_2 (x,t)=1mm sin(2rx+20rtt) A sinusoidal transverse wave has a wavelength of 2.8 m. It takes 0.2 s for an element of the string at a position x to move from the maximum position of ymax = 0.03 m to the equilibrium position y 0. What is the period of the wave, T, and the wave speed, v? 0.4 sec; 7 m/s O 0.8 sec; 14 m/s O 0.8 sec; 3.5 m/s 0.4 sec; 28 m/s A taut string fixed at both ends is driven by an oscillator at a constant frequency of 100 Hz. The amplitude
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