Q.6/ For the system shown in Figure 4, a step torque is applied at 0,(t). Find a. The transfer function, G(s) = 02(s)/T(s). b. The percent overshoot, settling time, and peak time for 02(1). [Section: 4.6] T(1) 0(1) 0 2(1) 1.07 kg-m² 1.53 N-m-s/rad 1.92 N-m/rad
Q.6/ For the system shown in Figure 4, a step torque is applied at 0,(t). Find a. The transfer function, G(s) = 02(s)/T(s). b. The percent overshoot, settling time, and peak time for 02(1). [Section: 4.6] T(1) 0(1) 0 2(1) 1.07 kg-m² 1.53 N-m-s/rad 1.92 N-m/rad
Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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![Q.6/ For the system shown in Figure 4, a step torque is applied at 01(t). Find
a. The transfer function, G(s) = 02(s)/T(s).
b. The percent overshoot, settling time, and peak
time for 02(1). [Section: 4.6]
T(1) 0,(1)
0 2(1)
1.07 kg-m² HH
1.53 N-m-s/rad
1.92 N-m/rad](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fb76e4008-74ad-4ff8-bf4d-0da6852bdb78%2F8e01eadf-7322-4e02-afc7-2aaf9dec3a41%2Fp0nxy68_processed.png&w=3840&q=75)
Transcribed Image Text:Q.6/ For the system shown in Figure 4, a step torque is applied at 01(t). Find
a. The transfer function, G(s) = 02(s)/T(s).
b. The percent overshoot, settling time, and peak
time for 02(1). [Section: 4.6]
T(1) 0,(1)
0 2(1)
1.07 kg-m² HH
1.53 N-m-s/rad
1.92 N-m/rad
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