In the circuit shown, R1 = 3 N, R2 = 2 N, R3 = 5 Q, ɛ1 = 4 V, ɛ2 = 10 V and ɛz = 6 V. Find the currents I,, 12 and I3, and the potential difference Var using Kirchhoff's rules. b а E1 + E2 + E3 + I2 13 R1 R2 R3

Physics for Scientists and Engineers: Foundations and Connections
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ISBN:9781133939146
Author:Katz, Debora M.
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Chapter28: Current And Resistance
Section: Chapter Questions
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In the circuit shown, R1 = 3 N, R2 = 2 N, R3 = 5 Q, ɛ1 = 4 V, ɛ2 = 10 V and ɛz = 6 V. Find the
currents I,, 12 and I3, and the potential difference Var using Kirchhoff's rules.
b
а
E1 +
E2 +
E3
+
I2
13
R1
R2
R3
Transcribed Image Text:In the circuit shown, R1 = 3 N, R2 = 2 N, R3 = 5 Q, ɛ1 = 4 V, ɛ2 = 10 V and ɛz = 6 V. Find the currents I,, 12 and I3, and the potential difference Var using Kirchhoff's rules. b а E1 + E2 + E3 + I2 13 R1 R2 R3
b
In the circuit shown, Determine the following:
a
7 V
2 V+
A. Magnitude and direction of the current
(Ans. I = 0.3889 A, CCW)
B. The potential differences Vad,Vef and Vre
(Ans. Vad = 7.8333 V, Vef = -1.8889 V, Vhe =
4.3333 V)
h
d
6 V+
6Ω
4 V
+ f
e
Transcribed Image Text:b In the circuit shown, Determine the following: a 7 V 2 V+ A. Magnitude and direction of the current (Ans. I = 0.3889 A, CCW) B. The potential differences Vad,Vef and Vre (Ans. Vad = 7.8333 V, Vef = -1.8889 V, Vhe = 4.3333 V) h d 6 V+ 6Ω 4 V + f e
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