3.5 For each of the circuits shown in Fig. P3.3. a) find the equivalent resistance seen by the source, b) find the power developed by the source.

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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3.5 part a and b

satisfies Kirchhoff's voltage law around every
closed loop.
3.2 a) Find the power dissipated in each resistor in the
circuit shown in Fig. 3.9.
ICE
b) Find the power delivered by the 120 V source.
e) Show that the power delivered equals the power
dissipated.
SIM
Figure P3.3
18 V
8 kf
www
)6 kn 7kn3
w
350
150 90 V
250
ww
skf
(c)
w
10 (2
40 Ω
a) identify the resistors connected in parallel,
b) simplify the circuit by replacing the parallel-
connected resistors with equivalent resistors.
3.5 For each of the circuits shown in Fig. P3.3,
a) find the equivalent resistance seen by the
source,
b) find the power developed by the source.
27 V
500
w
800 1200 f
300 f
2000
(b)
500 900 80 f
www
30 mA 300
(d)
100 70
Transcribed Image Text:satisfies Kirchhoff's voltage law around every closed loop. 3.2 a) Find the power dissipated in each resistor in the circuit shown in Fig. 3.9. ICE b) Find the power delivered by the 120 V source. e) Show that the power delivered equals the power dissipated. SIM Figure P3.3 18 V 8 kf www )6 kn 7kn3 w 350 150 90 V 250 ww skf (c) w 10 (2 40 Ω a) identify the resistors connected in parallel, b) simplify the circuit by replacing the parallel- connected resistors with equivalent resistors. 3.5 For each of the circuits shown in Fig. P3.3, a) find the equivalent resistance seen by the source, b) find the power developed by the source. 27 V 500 w 800 1200 f 300 f 2000 (b) 500 900 80 f www 30 mA 300 (d) 100 70
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