1.1 E Circuit values: E = 493V R1 = 2 k R2 = 6 ΚΩ R3 = 6 ΚΩ R4 = 2 ΚΩ R5 = 6 k R6 = 6 k R7 = 2 k R1 w 22 R2 ww ww R3 R3 R4 ш R5 w R8 = 6 ΚΩ Rload = 4 k Find the equivalent resistance Ra, of R7, Rload, and R8. w R7 lload + R6 Rload Vload R8 w
1.1 E Circuit values: E = 493V R1 = 2 k R2 = 6 ΚΩ R3 = 6 ΚΩ R4 = 2 ΚΩ R5 = 6 k R6 = 6 k R7 = 2 k R1 w 22 R2 ww ww R3 R3 R4 ш R5 w R8 = 6 ΚΩ Rload = 4 k Find the equivalent resistance Ra, of R7, Rload, and R8. w R7 lload + R6 Rload Vload R8 w
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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How would you find the voltage drop on R3? I got the current of the system as 41.08mA, Vr1 as 82.16V, Vr2 as 246.48V

Transcribed Image Text:1.1
E
Circuit values:
E = 493V
R1 = 2 k
R2 = 6 ΚΩ
R3 = 6 ΚΩ
R4 = 2 ΚΩ
R5 = 6 k
R6 = 6 k
R7 = 2 k
R1
w
22
R2
ww
ww
R3
R3
R4
ш
R5
w
R8 = 6 ΚΩ
Rload = 4 k
Find the equivalent resistance Ra, of R7, Rload, and R8.
w
R7
lload
+
R6
Rload
Vload
R8
w
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