6.9. Derive the differential equations of motion of the two degree of freedom system shown in Fig. P6.6. Let mį = m2 = 10 kg, I = 1m, k = 1000 N/m, and c = 10N- s/m, determine the response of the system as a function of time due to an initial rotation of the rod equal to 2°.

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
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MECHANICAL VIBRATION 6.9

6.9. Derive the differential equations of motion of the two degree of freedom
system shown in Fig. P6.6. Let mi = m2 = 10kg, I = 1 m, k = 1000 N/m,
and c = 10N- s/m, determine the response of the system as a function of time
due to an initial rotation of the rod equal to 2°.
Transcribed Image Text:6.9. Derive the differential equations of motion of the two degree of freedom system shown in Fig. P6.6. Let mi = m2 = 10kg, I = 1 m, k = 1000 N/m, and c = 10N- s/m, determine the response of the system as a function of time due to an initial rotation of the rod equal to 2°.
m2
Fig. P6.6
Transcribed Image Text:m2 Fig. P6.6
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