Considering the system from the image. Design a compensator that achieves/meets the following performance: Mp = 25% (overshoot) and tp = 0.5 s.
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Considering the system from the image. Design a compensator that achieves/meets the following performance: Mp = 25% (overshoot) and tp = 0.5 s.
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- can you solve this question for value a/4 thenk you :)Figure Q1(c) shows a block diagram of a position control system with velocity feedback. Determine the transfer function of the system relating 0;(s) and Oc(s).QUESTION 24 1165:0100 B84518 1165:0103 BB3478 1165:0106 01C3 1165:0108 48 1165:0109 4B 1165:010A 891E0001 1165:010E CD20 MOV AX, 1845 BX, 7834 BX, AX MOV ADD DEC AX DEC MOV BX (01001, BX 20 INT You have used DEBUG to unassemble the above code. The instruction stored at the address 010A is bytes long. 2 O 16 4.
- REC O x .002 w to Determine If 2 Events Are Independent: Substitute in what you know in to P(An B) = P(A) • P(B) and check to see if left side equals right side. o If it's equal, then it's independent. o If it's not equal, then it's not independent (or dependent). Let event M = taking a math class. Let event S = taking a science class. Then. M and S = taking a math class and a science class. Suppose P(M) = 0.6. P(S) = 0.5. and P(M and S) = 0.3. Are M and S independent? PCM)- P(S) = P(Mand5) .3 .3 indep endent .3 9. In a class, 60% of the students are female. 50% of all students in the class have long hair, 45% of the students are female and have long hair. Of the female students, 75% have long hair. Let F be the event that the student is female. Let L be the event that the student has long hair. One student is picked randomly. Are the events of being female and having long hair independent? ELMOEX: 18v Given 2.2kn La) VE 330L (6) Ic JIc (C) VC VB=UV (d) VCE 1.2k2 (e) IB (4) BFing steady state valye of y(t)
- 43. For the system in the given figure, R(S) G₁ (s) C(s) R(S) G₂ (s) H,(s) C(s)For any given system, the steady state error depends on the Zeros of the system O Poles of the system Order of the system O Type number of the systemInductive Circuits Fill in all the missing values. Refer to the following formulas: XL=2fLL=XL2ff=XL2L Inductance (H) Frequency (Hz) Inductive Reactance ( ) 1.2 60 0.085 213.628 1000 4712.389 0.65 600 3.6 678.584 25 411.459 0.5 60 0.85 6408.849 20 201.062 0.45 400 4.8 2412.743 1000 40.841