Select the correct transfer function of the system that has the approximation Bode magnitude diagram as follows -20 dB/d

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Select the correct transfer function of the system that has the approximation Bode magnitude diagram as follows -20 dB/d

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Select The Correct Transfer Function Of The System That Has The Approximation Bode Magnitude Diagram As Follows 20 Db D 1
Select The Correct Transfer Function Of The System That Has The Approximation Bode Magnitude Diagram As Follows 20 Db D 1 (30.71 KiB) Viewed 15 times
Select The Correct Transfer Function Of The System That Has The Approximation Bode Magnitude Diagram As Follows 20 Db D 2
Select The Correct Transfer Function Of The System That Has The Approximation Bode Magnitude Diagram As Follows 20 Db D 2 (44.82 KiB) Viewed 15 times
Select the correct transfer function of the system that has the approximation Bode magnitude diagram as follows -20 dB/dec Magnitude (dB) -20 dB/dec 16 dB O dB/dec O dB/dec W3 66 6-8 Frequency (rad/sec) G(s) 1.8(1+8/3)(1+s/6) (1+s/8) G(s) 18.92(1+s/3)(1+s/8) s(1+s/6) G(S) 8.92(1+S/6)(1+5/8) s(1+3/3) G(s) == 12.89(1+s/3) s(1+s/6)(1+s/8) G(s) = 12.89 (1+s/8) $(1+5/6)(1+s/3)

Question 15 2 pts Select the correct statement about the following system: 8(s + 1) G(s) s(2+5)(2+3) = The system has one ideal integral and two first order lead factors and its Bode diagram has three break frequencies only. The system has two ideal integrals and two first order lead factors and its Bode diagram has three break frequencies only. The system has one ideal integral, one first order lead and two first order lag factors and its Bode diagram has three break frequencies only. The system has one ideal integral and two first order lag factors and its Bode diagram has two break frequencies only. The system has two ideal integrals, one first order lead and two first order lag factors and its Bode diagram has three break frequencies only.
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