1. You should have already solved the system of EOMs and found the mode shapes for the system shown in Figure 1, with pa

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1. You should have already solved the system of EOMs and found the mode shapes for the system shown in Figure 1, with pa

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1 You Should Have Already Solved The System Of Eoms And Found The Mode Shapes For The System Shown In Figure 1 With Pa 1
1 You Should Have Already Solved The System Of Eoms And Found The Mode Shapes For The System Shown In Figure 1 With Pa 1 (290.77 KiB) Viewed 28 times
1. You should have already solved the system of EOMs and found the mode shapes for the system shown in Figure 1, with parameters kı = 820 Nm-1, k2 = 300 Nm-1, k3 = 540 Nm-1, mı = 4 kg, Ip = 2 kgmº, T1 = 0.4m and r2 = 0.75 m. k2 k3 T2 WW www.mi ww Ip & ki Figure 1: Tutorial 7 - System C (a) The mass mi is given an initial velocity 12.. 2 ms-' with zero initial displacement, with the pulley not being disturbed. Find the displacement response for the system, by first decoupling the system in 2 independent SDOF problems, then coupling their respective displacement solution.s (b) The pulley is subjected to a torque T = 5 cos(4t)N m. Initial displacement and velocity are both zero. Find the displacement response to this excitation, using the coupling-decoupling approach.
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