3. Derive the equation of motion and find the steady-state response of the system depicted in the following figure for rotational motion about the hinge O for the following data: k₁=k₂ = 5000 N/m, a 0.25 m, b=0.5 m, 1-1 m, m= 10 kg. M-50 kg, Fo= 500 N, and = 1000 rpm. Uniform rigid bar, mass m +at+ Famo F(t)= Fo sin cot M
3. Derive the equation of motion and find the steady-state response of the system depicted in the following figure for rotational motion about the hinge O for the following data: k₁=k₂ = 5000 N/m, a 0.25 m, b=0.5 m, 1-1 m, m= 10 kg. M-50 kg, Fo= 500 N, and = 1000 rpm. Uniform rigid bar, mass m +at+ Famo F(t)= Fo sin cot M
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![3. Derive the equation of motion and find the steady-state response of the system depicted in the
following figure for rotational motion about the hinge O for the following data: k₁=k2 = 5000
N/m, a 0.25 m, b=0.5 m, 1-1 m, m= 10 kg. M-50 kg, Fo=500 N, and a = 1000 rpm.
www
Uniform rigid bar, mass m
-oot +
F(t)= Fo sin cot
M](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F15bcf04d-4b25-4678-9494-ccf95c48f66d%2Feea7d696-9742-4482-93fc-92bd2e6fa7fc%2F3sbvtn9_processed.jpeg&w=3840&q=75)
Transcribed Image Text:3. Derive the equation of motion and find the steady-state response of the system depicted in the
following figure for rotational motion about the hinge O for the following data: k₁=k2 = 5000
N/m, a 0.25 m, b=0.5 m, 1-1 m, m= 10 kg. M-50 kg, Fo=500 N, and a = 1000 rpm.
www
Uniform rigid bar, mass m
-oot +
F(t)= Fo sin cot
M
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