2. A weight of mass 2 kg is placed on a long vertical spring with spring constant k = 20. The damping force is 4 dy/dt Newtons. The weight is moved 2 meters above its equilibrium position and is started in motion with a velocity of 1 meter/sec. upward. Find the equation of motion for the weight. (There is no external force).

Physics for Scientists and Engineers, Technology Update (No access codes included)
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Chapter8: Conservation Of Energy
Section: Chapter Questions
Problem 8.69AP: A block of mass M rests on a table. It is fastened to the lower end of a light, vertical spring. The...
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2. A weight of mass 2 kg is placed on a long vertical spring with spring constant k = 20. The
damping force is 4 dy/dt Newtons. The weight is moved 2 meters above its equilibrium
position and is started in motion with a velocity of 1 meter/sec. upward. Find the
equation of motion for the weight. (There is no external force).
Transcribed Image Text:2. A weight of mass 2 kg is placed on a long vertical spring with spring constant k = 20. The damping force is 4 dy/dt Newtons. The weight is moved 2 meters above its equilibrium position and is started in motion with a velocity of 1 meter/sec. upward. Find the equation of motion for the weight. (There is no external force).
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