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.

University Physics Volume 1
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Chapter15: Oscillations
Section: Chapter Questions
Problem 67AP: A 2.00-kg block lies at rest on a frictionless table. A spring, with a spring constant of 100 N/m is...
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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.
(a
Find the position of the block att= 3s.
(b
Find the total energy, frequency and the period of oscillation.
(c)
sticks there. Find the period oscillation after the brick sticks to the block.
During the motion another brick of mass M= 2 kg falls on top of the block and
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. (a Find the position of the block att= 3s. (b Find the total energy, frequency and the period of oscillation. (c) sticks there. Find the period oscillation after the brick sticks to the block. During the motion another brick of mass M= 2 kg falls on top of the block and
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