1.27. The acceleration of a machine part modeled as a spring-mass system is measured and recorded in Figure Pl.27 Compute the amplitude of the displacement of the mass. Acceleration in m/s? 1.2 0.8 0.4 0. -0.4 -0.8 -1.2 0.4 0.8 1.2 1.6 2.4 2.8 3.2 3.6 4. 4.4 4.8 Time, s 2.
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![1.27. The acceleration of a machine part modeled as a spring-mass system is measured and
recorded in Figure Pl.27 Compute the amplitude of the displacement of the mass.
Acceleration in m/s?
1.2
0.8
0.4
0.
-0.4
-0.8
-1.2
0.4
0.8
1.2
1.6
2.4
2.8
3.2
3.6
4.
4.4
4.8
Time, s
2.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F0e3e60ac-d8dd-4ace-b000-aeae61bcddbb%2F9871b3d0-c701-457f-9a80-12c9b840a5ab%2F1pyzkdh.png&w=3840&q=75)
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- A 50-cm-long spring is suspended from the ceiling. A 250 g mass is connected to the end and held at rest with the spring unstretched. The mass is released and falls, stretching the spring by 20 cm before coming to rest at its lowest point. It then continues to oscillate vertically. a. What is the spring constant?b. What is the amplitude of the oscillation? c. What is the frequency of the oscillation?The block is at rest as shown. What is the peiod of the oscillation if the block is pulled down by 10 cm, in seconds? Use g = 10 m/s2. Your answer needs to have 2 significant figures, including the negative sign in your answer if needed. Do not include the positive sign if the answer is positive. No unit is needed in your answer, it is already given in the question statement.A small earthquake starts a lamppost vibrating back and forth. The amplitude of the vibration of the top of the lamppost is 6.2 cm at the moment the quake stops, and 7.4 s later it is 1.0 cm . What is the time constant for the damping of the oscillation? What was the amplitude of the oscillation 3.7 s after the quake stopped?