Problem 3.3 For each of the circuits shown in Fig. P3.2 a.) identify the resistors connected in parallel, b.) simplify the circuit by replacing the parallel-connected esistors with equivalent resistors. Problem 3.4 For each of the circuits shown in Fig. P3.2 a.) find the equivalent resistance seen by the source, b.) find the power developed by the source. 2100 200 24 36 n 18ng 18V 30 mA O 200 n 120n 180 ng (b) 75 k 50 k 6000 2 k 65 V 60 V 15 kn 3 kn 90 k (c) (d)

Introductory Circuit Analysis (13th Edition)
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Publisher:Robert L. Boylestad
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Problem 3.3 For each of the circuits shown in Fig. P3.2 a.) identify the resistors
connected in parallel, b.) simplify the circuit by replacing the parallel-connected
resistors with equivalent resistors.
Problem 3.4 For each of the circuits shown in Fig. P3.2 a.) find the equivalent
resistance seen by the source, b.) find the power developed by the source.
210 0
280 0
24 1
18 V
36 N 18ng
30 mA
200n 1200 18O ng
(b)
75 kf
50 k
600 1
100 kfn 150 kn 60 kag 900 ng 750 n s00 ng *
90 k
2 kn
15 kn 3kn
60 V
(c)
(d)
Fig. P3.2 Circuits for Problem 3.3 and 3.4
Transcribed Image Text:Problem 3.3 For each of the circuits shown in Fig. P3.2 a.) identify the resistors connected in parallel, b.) simplify the circuit by replacing the parallel-connected resistors with equivalent resistors. Problem 3.4 For each of the circuits shown in Fig. P3.2 a.) find the equivalent resistance seen by the source, b.) find the power developed by the source. 210 0 280 0 24 1 18 V 36 N 18ng 30 mA 200n 1200 18O ng (b) 75 kf 50 k 600 1 100 kfn 150 kn 60 kag 900 ng 750 n s00 ng * 90 k 2 kn 15 kn 3kn 60 V (c) (d) Fig. P3.2 Circuits for Problem 3.3 and 3.4
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