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A uniform string of mass 1 kg and length 1 m is attached at one end to a block of mass 2 kg placed on a frictionless horizontal surface. A horizontal force of 6 N is applied to the block. A transverse pulse is generated at the far end A of the string (the end away from the block). Let B be the junction of the string and block. Choose the correct statement(s).
- The time for the pulse to travel from A to B is sqrt(2) seconds
- The motion of the pulse is non-uniformly accelerated with respect to the ground frame
- The time for the pulse to travel from A to B equals the time to travel from B to A
- If two pulses are generated simultaneously at A and B, they meet at 0.25 m from A
Correct answer: The motion of the pulse is non-uniformly accelerated with respect to the ground frame
Solution
With mu = 1 kg/m and a = 2 m/s², T(x) = (1*(1-x) + 2)*2 = 2(3-x). The wave speed v(x) = sqrt(T/mu) = sqrt(2(3-x)) varies with position, making the pulse's acceleration non-uniform in the ground frame.
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