A piano string can produce a wave with a wavelength of 13.9 meters and a period of 3.37 millisecond. The frequency (in Hz) of the wave is:
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![A piano string can produce a wave with a wavelength of 13.9 meters and a period
of 3.37 millisecond. The frequency (in Hz) of the wave is:](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fada791d9-c81a-4d40-86c3-0e4f138c4a85%2Fd00e3e5f-ca29-4ce1-95c7-a2703138e8e7%2Fp4c4sxv_processed.jpeg&w=3840&q=75)
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- A wave is modeled with the function y(x,t) = (0.25m)cos(0.30m x-0.90s-1t+r/3). Find (0.5+ (a) the amplitude, (b) the wave speed, (c) the direction of the waveA certain wave has a frequency of 17.0 Hz and a speed of 20.0 m/s. The wave starts at a source and ends 9.00 m away. If there is a crest at a point on the wave 3.70 m away from the start, how many troughs are there and where are they?A transverse sinusoidal wave travels to the right with a wave speed 8.96 m/s. The amplitude of the wave is 0.019 m and the wavelength is 1.73 m. What is the frequency of the oscillation in Hertz?
- A water wave travelling in a certain direction has a wavelength of 8.5 mm, a speed of 8.2 m/s and an amplitude of 5 mm. Calculate the frequency of the wave.A transverse wave travels across a string having a linear mass density 0.065 kg/m. The wavelength of the wave is measured to be 0.71 m and the frequency is 52.5 Hz. What is the tension in the string?Write a wave function describing the wave.