A 0.175 kg mass on a table is attached to a horizontal spring with a spring constant of 155 N/m. Ignore all friction and air resistance in this problem (i.e. assume no non-conservative forces act on the system). At some time you make a measurement of the mass and find that it is moving at a speed of 0.815 m/s and is 0.03 m from equilibrium. Find the amplitude of the oscillation.
A 0.175 kg mass on a table is attached to a horizontal spring with a spring constant of 155 N/m. Ignore all friction and air resistance in this problem (i.e. assume no non-conservative forces act on the system). At some time you make a measurement of the mass and find that it is moving at a speed of 0.815 m/s and is 0.03 m from equilibrium. Find the amplitude of the oscillation.
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![A 0.175 kg mass on a table is attached to a
horizontal spring with a spring constant of
155 N/m. Ignore all friction and air
resistance in this problem (i.e. assume no
non-conservative forces act on the system).
At some time you make a measurement of
the mass and find that it is moving at a
speed of 0.815 m/s and is 0.03 m from
equilibrium. Find the amplitude of the
oscillation.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F283a1ad9-74f0-4fa9-8c35-31ddea55d033%2F1574e777-8a11-4df9-b14c-a9dca3027a03%2Fdl5atmr_processed.jpeg&w=3840&q=75)
Transcribed Image Text:A 0.175 kg mass on a table is attached to a
horizontal spring with a spring constant of
155 N/m. Ignore all friction and air
resistance in this problem (i.e. assume no
non-conservative forces act on the system).
At some time you make a measurement of
the mass and find that it is moving at a
speed of 0.815 m/s and is 0.03 m from
equilibrium. Find the amplitude of the
oscillation.
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