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2s +3 s+4 = 3. P3: Build series/parallel connections. Let G1(s) = G2(s) has a zeros at s=-2, poles at а 532+2s+2 2s+6 S=
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2s +3 s+4 = 3. P3: Build series/parallel connections. Let G1(s) = G2(s) has a zeros at s=-2, poles at а 532+2s+2 2s+6 S=
2s +3 s+4 = 3. P3: Build series/parallel connections. Let G1(s) = G2(s) has a zeros at s=-2, poles at а 532+2s+2 2s+6 S=-0.5 and -8 and a gain of 5, G3(S) = and G4(S) = Let the systems be Sa+s+8 (s+1)(2+45+1) connected as shown in the figure below. a. Use block diagram reduction techniques to simplify the blocks and calculate the overall transfer function by hand.