For each of the following transfer functions compute & plot the 1H (jw)] & Phase response [H(jw). magnitude response 1 H(s) = 10 2 H(s) = 5+2 605 8 +3 3] (0) H (5) = 4 [3+ 100 ] (b) H(s) = H(S) = 4√ 3+ 100 ] S+ 4 5 H(3) = 75 [+ 10 ] [ 5+ 105] 5+ H(S) = 305 [ 5+10]² 6] H(s) 305 = poles x ? 5² + 25+ 101 E H(s) = 365 poles = ? 8 १ s² + 45 + 2504 1 H(s) = 25 [ 5² + 0,025 + 1 [- 106 ] poles = ? H (S) = 42 [ 5² + 20° + 106 ] poles = ?
For each of the following transfer functions compute & plot the 1H (jw)] & Phase response [H(jw). magnitude response 1 H(s) = 10 2 H(s) = 5+2 605 8 +3 3] (0) H (5) = 4 [3+ 100 ] (b) H(s) = H(S) = 4√ 3+ 100 ] S+ 4 5 H(3) = 75 [+ 10 ] [ 5+ 105] 5+ H(S) = 305 [ 5+10]² 6] H(s) 305 = poles x ? 5² + 25+ 101 E H(s) = 365 poles = ? 8 १ s² + 45 + 2504 1 H(s) = 25 [ 5² + 0,025 + 1 [- 106 ] poles = ? H (S) = 42 [ 5² + 20° + 106 ] poles = ?
Delmar's Standard Textbook Of Electricity
7th Edition
ISBN:9781337900348
Author:Stephen L. Herman
Publisher:Stephen L. Herman
Chapter23: Resistive-inductive-capacitive Series Circuits
Section: Chapter Questions
Problem 1PA: You are an electrician working in a plant. A series resonant circuit is to be used to produce a high...
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