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= 60+10*5=1102) C1 R1 (60+10B) 2 600µF Vs 10Vrms L1 2. 100HZ 80mH 0° Figure 4 a. Calculate the equivalent impedance of this circuit . b. The current passing through the circuit. c. Draw the phasor diagram for the input voltage and current. d. Is the total current leading or lagging the input voltage?
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= 60+10*5=1102) C1 R1 (60+10B) 2 600µF Vs 10Vrms L1 2. 100HZ 80mH 0° Figure 4 a. Calculate the equivalent impedance of this circuit . b. The current passing through the circuit. c. Draw the phasor diagram for the input voltage and current. d. Is the total current leading or lagging the input voltage?
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![11:37 4
( 7amdiyeh ELECTRICAL-Part_Summer...
Figure 3
Task VI:
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= 60+10*5=1102)
C1
R1
(60+10B) Q
600µF
Vs
10Vrms
L1
80MH
100HZ
0°
Figure 4
a. Calculate the equivalent impedance of this circuit .
b. The current passing through the circuit.
c. Draw the phasor diagram for the input voltage and current.
d. Is the total current leading or lagging the input voltage?
Part 2: For the combined series-parallel RLC-circuit shown in Figure 5, answer the following
questions and show your steps in details knowing that the value of ß is the final number of your ID:
8
HTU.
Page 9 of 12
جامعة الحسين التقنية
Al Hussein Technical University
R1
R2
(20+10B) Q
102
ZL
Zc
Vs
1
Žj80 2
E-j40 Q
6020° V
Figure 5
What is the last number in your ID.
b. The total Impedance (Z) seen by the source.
c. The total current I. Is it lagging or leading?
d. The current passing the inductor using current divider.
e. The Voltage across the inductor .
f. The voltage dropped across R2 using ohm's law.
g. Verify KVL for loop 1.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Ff30016b7-2811-440b-b3dd-6874feed166d%2Fd7699475-b8e9-4421-bfeb-e8a93d3d5566%2F1bmn9vb_processed.png&w=3840&q=75)
Transcribed Image Text:11:37 4
( 7amdiyeh ELECTRICAL-Part_Summer...
Figure 3
Task VI:
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= 60+10*5=1102)
C1
R1
(60+10B) Q
600µF
Vs
10Vrms
L1
80MH
100HZ
0°
Figure 4
a. Calculate the equivalent impedance of this circuit .
b. The current passing through the circuit.
c. Draw the phasor diagram for the input voltage and current.
d. Is the total current leading or lagging the input voltage?
Part 2: For the combined series-parallel RLC-circuit shown in Figure 5, answer the following
questions and show your steps in details knowing that the value of ß is the final number of your ID:
8
HTU.
Page 9 of 12
جامعة الحسين التقنية
Al Hussein Technical University
R1
R2
(20+10B) Q
102
ZL
Zc
Vs
1
Žj80 2
E-j40 Q
6020° V
Figure 5
What is the last number in your ID.
b. The total Impedance (Z) seen by the source.
c. The total current I. Is it lagging or leading?
d. The current passing the inductor using current divider.
e. The Voltage across the inductor .
f. The voltage dropped across R2 using ohm's law.
g. Verify KVL for loop 1.
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