3. A 0.2 kg mass is suspended from a vertical spring with spring constant 80 N/m. (a) Calculate the elastic potential energy stored in the spring when the mass hangs at equilibrium. (b) The mass is then pulled down and released so that it oscillates harmonically. Calculate the time it takes for the mass to complete 50 cycles.

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Chapter15: Oscillations
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3. A 0.2 kg mass is suspended from a vertical spring with spring constant 80 N/m.
(a) Calculate the elastic potential energy stored in the spring when the
mass hangs at equilibrium.
(b) The mass is then pulled down and released so that it oscillates
harmonically. Calculate the time it takes for the mass to complete 50 cycles.
Transcribed Image Text:3. A 0.2 kg mass is suspended from a vertical spring with spring constant 80 N/m. (a) Calculate the elastic potential energy stored in the spring when the mass hangs at equilibrium. (b) The mass is then pulled down and released so that it oscillates harmonically. Calculate the time it takes for the mass to complete 50 cycles.
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