A 250 2 resistor, a 2.5 mH inductor, and a 40 nF capacitor are in series.

Delmar's Standard Textbook Of Electricity
7th Edition
ISBN:9781337900348
Author:Stephen L. Herman
Publisher:Stephen L. Herman
Chapter24: Resistive-inductive-capacitive Parallel Circuits
Section: Chapter Questions
Problem 1PP: The circuit in Figure 24-2 is connected to a 120-V, 60-Hz line. The resistor has a resistance of 36...
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please help solve part b and c 

A 250 N resistor, a 2.5 mH inductor, and a 40 nF
capacitor are in series.
Transcribed Image Text:A 250 N resistor, a 2.5 mH inductor, and a 40 nF capacitor are in series.
Part B
Give the numerical value of the pole of the impedance.
Express your answer in radians per second to three significant figures.
vec
-p =
rad/s
Submit
Request Answer
Part C
Find the numerical values of the zeros of the impedance.
Express your answers in radians per second to three significant figures. Enter your answers in
rectangular form separated by a comma.
Hνα ΑΣφ
?
vec
-21, -22 =
rad/s
Transcribed Image Text:Part B Give the numerical value of the pole of the impedance. Express your answer in radians per second to three significant figures. vec -p = rad/s Submit Request Answer Part C Find the numerical values of the zeros of the impedance. Express your answers in radians per second to three significant figures. Enter your answers in rectangular form separated by a comma. Hνα ΑΣφ ? vec -21, -22 = rad/s
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