1. In Fig. (3-la), if R=1000, R=150 Q and R.=2002. Calculate the value of, R1, R, and R3 in the equivalent Y configuration.
1. In Fig. (3-la), if R=1000, R=150 Q and R.=2002. Calculate the value of, R1, R, and R3 in the equivalent Y configuration.
Introductory Circuit Analysis (13th Edition)
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![6. Η.W
1. In Fig. (3-1a), if R 1000, R,=150 Q and R=2000. Calculate the value
9.
a
of, R1, R2and R, in the equivalent Y configuration.
2. In Fig. (3-1b), if R,=330, R,= 47 Q and R2-682 Calculate the value of,
Ra,R, and R, in the equivalent A configuration.
3. Calculate the equivalent resistance seen across the supply in the circuit shown
in Fig. (3-4)..
a
R1
Rc
%3D
R.
R2
(a) Delta connection
Fig. (3-1)
(b) Star connection
2202
a
A
T- 4V
1502
1002
A
+1
4V
2002
A
Fig. (3-2)
38](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F66216caf-37a1-46ec-9dc2-3a1b7d05a767%2F869cc069-a806-496e-a49a-894e1211b205%2F0hr60b_processed.jpeg&w=3840&q=75)
Transcribed Image Text:6. Η.W
1. In Fig. (3-1a), if R 1000, R,=150 Q and R=2000. Calculate the value
9.
a
of, R1, R2and R, in the equivalent Y configuration.
2. In Fig. (3-1b), if R,=330, R,= 47 Q and R2-682 Calculate the value of,
Ra,R, and R, in the equivalent A configuration.
3. Calculate the equivalent resistance seen across the supply in the circuit shown
in Fig. (3-4)..
a
R1
Rc
%3D
R.
R2
(a) Delta connection
Fig. (3-1)
(b) Star connection
2202
a
A
T- 4V
1502
1002
A
+1
4V
2002
A
Fig. (3-2)
38
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