Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN: 9780133923605
Author: Robert L. Boylestad
Publisher: PEARSON
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- i need the answer quicklyarrow_forwardblank sheets of BODE paper and, using straight line approximations,hand draw the Gain and Phase (Bode) plots for the following transfer functions. (s-10) S 100 3. (s+1)(s+100) Please draw the gain and phase plots using BODE graphing. Please don't skip any steps. I do not understand how to solve with the negative sign in the numerator, please do explain that.arrow_forward8. What is the phase of this transfer function? 1 R+ H(w)= jaC+1/R (R+ jaL)arrow_forward
- How many corner frequencies are in the following sinusoidal transfer function? 1 19 - G(ja) = (10 – jw)(100 + jw)(jw + 1) O A) There are not correct answers O B) four C) two O D) three O E) fivearrow_forwardThe solution needed to be printed, not handwrittenarrow_forwarddraw asymptotic Bode plots (magnitude & phase).arrow_forward
- draw asymptotic Bode plots (magnitude & phase). and please explain step by steparrow_forwardThe positive values of "K" and "a" so that the system shown in the figure below oscillates at a frequency of 2 rad/sec respectively are K(s+ 1) R (s)- C(s) (s + as? + 2s + 1) O 1,0.75 O 1,0.66 2,0.66 2,0.75arrow_forwardConsider the following transfer function: (0.1s+2)(s+3) 2. 0.5s2+3s+3 The polar plot meets the real axis at w = 0 and w = 00. What are the crossing points? Choose the closest answer. %3D Select one: O a. 4.00 (w = 0), 0.40 (w = 00) O b. -4.00 (w = 0), -0.40 (w = 0) %3D O c. 0.40 (w = 0), 4.00 (w = o0) %3D d. 20.00 (w = 0), 3.00 (w = ) e. 2.00 (w = 0), 3.00 (w = 00) The correct answer is: 4.00 (w = 0), 0.40 (w = 00)arrow_forward
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