What is the speed of a transverse wave on a string of length 2.0 m and mass 60.0 g under a tension of 625.0 N?
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What is the speed of a transverse wave on a string of length 2.0 m and mass 60.0 g under a tension of 625.0 N?
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- The distance between two successive minima of a transverse wave is 2.40 m. Five full crest intervals of the wave pass a given point along the direction of travel every 14.7 s. (a) Find the frequency of the wave.Hz(b) Find the wave speed.m/sA 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?A sinusoidal wave is traveling along a rope. The oscillator that generates the wave completes 37.0 vibrations in 33.0 s. A given crest of the wave travels 420 cm along the rope in 15.0 s. What is the wavelength of the wave?
- A steel wire is 5.00 m long and is stretched with a tension of 1400 N . The speed of propagation of a transverse wave on the wire is 800 m/s. a)What is the mass per unit length of the wire, μ? b)What is the mass of the wire?The speed of a transverse wave is 250.00m/s, its wavelength is 0.80m, and the amplitude is 23.00 cm. How much time(in s) is required for a particle on the string to move through a distance of 5.00km?A standing wave is created through a 246-cm long rope. Vibrations travel within the rope at speeds of 22.7 m/s. Determine the frequency of vibration of the rope.