1. Compute for the ff: a.) total or equivalent resistance RT b.) the common current / c.) The voltage drop V1, V2, V3 across each resistances d.) The power P1, P2 and P3 absorbed by each resistors e.) The total power PT supplied by the source voltage E + V1 - R1=4N %3D E 40V R2 2Ω V. R1 =102 - V3 + - +

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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1. Compute for the ff:
a.) total or equivalent resistance R7
b.) the common current /
c.) The voltage drop V1, V2, V3 across each resistances
d.) The power P1, P2 and P3 absorbed by each resistors
e.) The total power Pr supplied by the source voltage E
+ V1 -
R1=4N
+
E
40V
R2
20 V2
RT
R1=102
- V3 +
2. Compute for the ff:
a.
The total or equivalent resistance Riif R1= 200, R2 = 400 and R3 = 600
b. The voltage V1, V2, V3 across each resistance
С.
The branch currents I1, I2, I3
d.
The power P, P2 and P3 absorbed by each resistor
е.
The total power PT supplied by the source voltage E
I1
Iz
IT
RT V1
+
+
100V
E
R1
R2
V3
R3
IT
Transcribed Image Text:1. Compute for the ff: a.) total or equivalent resistance R7 b.) the common current / c.) The voltage drop V1, V2, V3 across each resistances d.) The power P1, P2 and P3 absorbed by each resistors e.) The total power Pr supplied by the source voltage E + V1 - R1=4N + E 40V R2 20 V2 RT R1=102 - V3 + 2. Compute for the ff: a. The total or equivalent resistance Riif R1= 200, R2 = 400 and R3 = 600 b. The voltage V1, V2, V3 across each resistance С. The branch currents I1, I2, I3 d. The power P, P2 and P3 absorbed by each resistor е. The total power PT supplied by the source voltage E I1 Iz IT RT V1 + + 100V E R1 R2 V3 R3 IT
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