block of mass m = 3 kg is attached to a spring with spring constant k= 250 N/m. Then it pulled a distance A = 12 cm from equilibrium. Now solve the following problems. Find the position of the block at t= 3s. ) Find the total energy, frequency and the period of oscillation.

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3. A block of mass m = 3 kg is attached to a spring with spring constant k = 250 N/m. Then it
was pulled a distance A = 12 cm from equilibrium. Now solve the following problems.
Find the position of the block at t= 3s.
) Find the total energy, frequency and the period of oscillation.
(а) (
(b)
(c)
During the motion another brick of mass M = 2 kg falls on top of the block and
sticks there. Find the period oscillation after the brick sticks to the block.
Transcribed Image Text:3. A block of mass m = 3 kg is attached to a spring with spring constant k = 250 N/m. Then it was pulled a distance A = 12 cm from equilibrium. Now solve the following problems. Find the position of the block at t= 3s. ) Find the total energy, frequency and the period of oscillation. (а) ( (b) (c) During the motion another brick of mass M = 2 kg falls on top of the block and sticks there. Find the period oscillation after the brick sticks to the block.
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