V1- Node a R1 4 K₂ www R₂ R3 www Ra www a) Determine the equivalent resistance, in kQ2, of the circuit. []

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Given V1=32.5 Volt,
R1=117.5 KQ, R2-80 kn, R3-85 kn, R4=15 kQ.
V1
Node a
RT
L
R₁
M
R₂
www
R3
www
Ra
www
a) Determine the equivalent resistance, RT
in ko, of the circuit. [ ]
b) Find current I in mA.
c) Use the current divider rule to
determine the current in resistor R1 in
mA. E
d) Use the current divider rule to
determine the current in resistor R2 in
mA. [C
e) Use the current divider rule to
determine the current in resistor R3 in
mA. D
f) Use the current divider rule to determine
the current in resistor R4 in mA. L
g) Verify Kirchhoff's current law at node
a.
Transcribed Image Text:Given V1=32.5 Volt, R1=117.5 KQ, R2-80 kn, R3-85 kn, R4=15 kQ. V1 Node a RT L R₁ M R₂ www R3 www Ra www a) Determine the equivalent resistance, RT in ko, of the circuit. [ ] b) Find current I in mA. c) Use the current divider rule to determine the current in resistor R1 in mA. E d) Use the current divider rule to determine the current in resistor R2 in mA. [C e) Use the current divider rule to determine the current in resistor R3 in mA. D f) Use the current divider rule to determine the current in resistor R4 in mA. L g) Verify Kirchhoff's current law at node a.
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