conse 5. For each of the second-order systems that follow, find , , Ts, Tp, Tr and %OS. a. T(s) = Response 0 b. T(s) = 0
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conse 5. For each of the second-order systems that follow, find , , Ts, Tp, Tr and %OS. a. T(s) = Response 0 b. T(s) = 0
conse 5. For each of the second-order systems that follow, find , , Ts, Tp, Tr and %OS. a. T(s) = Response 0 b. T(s) = 0 16 s²+35+16 6. For each pair of second order system specifications below, find the location of the second-order pair of poles. a. %OS 10%; Ts = 0.5 second b. %OS = 15% Ts = 0.25 second c. %OS = 5%; Ts = 2 second 7. Find the transfer function of a second-order system that yields a 12.3% overshoot and a settling time of 1 second. 8. Find the percent overshoot, settling time, rise time, and peak time for 14.145 T(s) = (s²+1.204s+2.829) (s+5) 9. For each of the unit step responses shown in Figure 1, find the transfer function of the system. c. T(s)=- 0.05 0.04 s²+0.02s +0.04 1.05 x 107 s²+1.6x10³s +1.05×107 Iutorial 3 Time Response 0.1 0.15 Time (seconds) € 0.2 0.25