2. Determine the current in and potential difference across each of the resistors in the circuit shown below. In addition determine the total power dissipated by the circuit. Describe and justify a likely application for this circuit. (You must use Kirchhoff's Rules for maximum credit.) C 33 V E b 5Q I₁ 12 > 25 2 www. 770 2 M- B M- 13 2012 a I 2 V Eq₁ = I2+I3 = I Poopabcd= 21+ (25) + (65) (F₁)-0 Poop CEFO= 33V-20(13) + (770)(

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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Question
2.
Determine the current in and potential difference across each of the resistors in the
circuit shown below. In addition determine the total power dissipated by the circuit. Describe
and justify a likely application for this circuit. (You must use Kirchhoff's Rules for maximum
credit.)
C
33 V
E
b
5 Ω
25 2
www.
I₁
12
> M-
B
770 2
13 2012
a
HO
II
2 V
Eq₁ = I2+I3 = I
Poopabcd= 21+ (25) + (65) (F₁)-0
Coop CEFO= 33y - 20(13) + (220)(
Transcribed Image Text:2. Determine the current in and potential difference across each of the resistors in the circuit shown below. In addition determine the total power dissipated by the circuit. Describe and justify a likely application for this circuit. (You must use Kirchhoff's Rules for maximum credit.) C 33 V E b 5 Ω 25 2 www. I₁ 12 > M- B 770 2 13 2012 a HO II 2 V Eq₁ = I2+I3 = I Poopabcd= 21+ (25) + (65) (F₁)-0 Coop CEFO= 33y - 20(13) + (220)(
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