For the circuit shown in Figure 5.9 below consider e = = (√2)(40 V) sin (1000t+ 10°): a) Determine the total impedance ZT in phasor form. b) Determine the current I in phasor form. c) Calculate Ic in phasor form. d) Calculate VL in phasor form. e + VL - ww 0000 8 Ω 602 8 Ω w + 892 Figure 5.9
For the circuit shown in Figure 5.9 below consider e = = (√2)(40 V) sin (1000t+ 10°): a) Determine the total impedance ZT in phasor form. b) Determine the current I in phasor form. c) Calculate Ic in phasor form. d) Calculate VL in phasor form. e + VL - ww 0000 8 Ω 602 8 Ω w + 892 Figure 5.9
Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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![For the circuit shown in Figure 5.9 below consider e = = (√2)(40 V) sin (1000t+ 10°):
a) Determine the total impedance ZT in phasor form.
b) Determine the current I in phasor form.
c) Calculate Ic in phasor form.
d) Calculate VL in phasor form.
e
+ VL
-
ww
0000
8 Ω
602
8 Ω
w
+
892
Figure 5.9](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Ffd75c580-e1ed-40e9-aa84-8dd389134e22%2F48ffaacb-8291-4364-ab4f-4daa74efa91d%2F4l3tyv_processed.png&w=3840&q=75)
Transcribed Image Text:For the circuit shown in Figure 5.9 below consider e = = (√2)(40 V) sin (1000t+ 10°):
a) Determine the total impedance ZT in phasor form.
b) Determine the current I in phasor form.
c) Calculate Ic in phasor form.
d) Calculate VL in phasor form.
e
+ VL
-
ww
0000
8 Ω
602
8 Ω
w
+
892
Figure 5.9
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