Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN: 9780133923605
Author: Robert L. Boylestad
Publisher: PEARSON
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- Q3 Based on Block Diagram Algebra, find the transfer function in Figure Q3. RO) Gr(s) H(s) G₂(s) H₂(1) Figure Q3 R(S) for the system shown H₂(s) Gr(s) C(s)arrow_forwardFollow the instructions. Answer is already given (check the given photo below), so just kindly provide a COMPLETE and CLEAR solution. Answer it ASAP because I really need it right now. Answer should be typewritten. Instructions: Show complete step-by-step solution.arrow_forwardDetermine which of the following is the expression for the closed- loop gain for the circuit shown below R4 Vin R₁ www R₂ M R2 R3 R1 1 ² ( 72²2 +²²4 + 1/²/³) O-2R4 (+/+) -R (1+R+R) R3 ○ - (1 + R² + R) R₁ Voutarrow_forward
- Reduce the block diagram shown to a single transfer function.arrow_forward(c) Find the closed-loop transfer function, C(s)/R(s) for the system shown in Figure Q3 using block diagram reduction if H1 and H2 equal to your second last and last numbers of your matric card (Example: Matrix no CD190257, H1=5, H2=7). R(s) G1 G2 H2 H1 Figure Q3arrow_forwardConsider the following block diagram R(S)- K H₂(s) G₁(s) H3(s) H₁(s) G₂(s) -Y(S) a) Simplify the block diagram and obtain the closed loop transfer function T(s) = Y(s)/R(s). 1 1 b) Let H₁ H₂ = 1, H3 = K₁, G₂ = and G₁ Give the necessary and sufficient 8+1 conditions on the parameters K₁ and K leading to the stability of T(s). Sarrow_forward
- O for the block diagram shown in figure R(s) Q2. Find the transfer function below using block diagram reduction. H(s) H(s) R(s) + G,(s) G,(s) C(s) G,(8) H,(s) H4(s)arrow_forward2. Find the transfer function of the signal flow graph shown in figure? R(s) G₁(s) G₂(s) V4(s) I H₁(s) G3(s) Gg(s) V3(s) V₂(s) G7(s) G4(s) H4(s) H₂(s) Vs(s) please answer in typing format Gg(s) V₁(s) Figure 2: Problem 2 Signal flow graph G6(s) O C(s)arrow_forwardQ2: Answer A or B A: Simplify the block diagram shown below and obtain the closed-loop transfer function C(s)/R(s). G₁ R(s) C(s) G₂ H₁ H₂arrow_forward
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