Part 1: According to the following schematic diagram of a series RLC Filter, you were requested to answer the following questions knowing that the value of ß is the final number of your ID: (Example: if the final # of your ID=5, the value of R1= 40+50=902) R1 L1 m (40+10B)Q 5mH C1 50Vrms Vs : 5.066µF 500 Hz Figure 6 A. Find the equivalent impedance seen by the source B. The current passing through the circuit and determine if it is lagging or leading. C. Evaluate the phase angle D. Draw the phasor diagram for the input voltage and current. (+2

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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Part 1: According to the following schematic diagram of a series RLC Filter, you were requested to
answer the following questions knowing that the value of ß is the final number of your ID:
(Example: if the final # of your ID=5, the value of R1= 40+50=902)
R1
L1
(40+10B)Q 5mH
C1
+
50Vrms
Vs
= 5.066µF
500 Hz
Figure 6
A. Find the equivalent impedance seen by the source
B. The current passing through the circuit and determine if it is lagging or leading.
C. Evaluate the phase angle
D. Draw the phasor diagram for the input voltage and current.
Transcribed Image Text:Part 1: According to the following schematic diagram of a series RLC Filter, you were requested to answer the following questions knowing that the value of ß is the final number of your ID: (Example: if the final # of your ID=5, the value of R1= 40+50=902) R1 L1 (40+10B)Q 5mH C1 + 50Vrms Vs = 5.066µF 500 Hz Figure 6 A. Find the equivalent impedance seen by the source B. The current passing through the circuit and determine if it is lagging or leading. C. Evaluate the phase angle D. Draw the phasor diagram for the input voltage and current.
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