Convert the block diagram in Figure 2 into a block diagram and apply the Mason's formula to determine the transfer function. R(s) V₁ (s) G₁(s) V/₂ (s) G₂(s) -H,(s) G₂(s) V₂ (s) √₂ (s) 1569 B₁ +H₂(s) G.(s) H₂(s) Vs (s) V6 (s) C(s)

Introductory Circuit Analysis (13th Edition)
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Convert the block diagram in Figure 2 into a block diagram and apply the Mason's
formula to determine the transfer function.
R(s) O
V₁ (s)
G₁(s)
V₂ (s)
G₂(s)
-H₁(s)
B₁
G₂(s)
V₂ (s) V₁ (s)
+H3(s)
G4(s)
H₂(s)
Figure 2
V₁ (s)
V6 (s)
C(s)
Transcribed Image Text:Convert the block diagram in Figure 2 into a block diagram and apply the Mason's formula to determine the transfer function. R(s) O V₁ (s) G₁(s) V₂ (s) G₂(s) -H₁(s) B₁ G₂(s) V₂ (s) V₁ (s) +H3(s) G4(s) H₂(s) Figure 2 V₁ (s) V6 (s) C(s)
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