(c) Now consider the circuit components to have the following values: R1 =2 Q, R2 = 4 2, R3 = 1 2, ɛ1 = 6 V, and ɛ2= 9 V. %3D %3D The current I is measured and found to be –1,5 A. Using the equations in parts (a) and (b), calculate the currents I2 and I3.

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Author:Robert L. Boylestad
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(c) Now consider the circuit components to have the following values:
Ri=2 Ω, R; = 4 Ω, R3 =1Ω, ει-6 V, and 82=9V.
%3D
The current I1 is measured and found to be -1.5 A.
Using the equations in parts (a) and (b), calculate the currents I2 and I3.
Transcribed Image Text:(c) Now consider the circuit components to have the following values: Ri=2 Ω, R; = 4 Ω, R3 =1Ω, ει-6 V, and 82=9V. %3D The current I1 is measured and found to be -1.5 A. Using the equations in parts (a) and (b), calculate the currents I2 and I3.
C2. Consider the circuit shown to the right, with current labels and directions indicated.
+E, -
-Ez+
Node A
R1
R3
R2
Loop 1
Loop 2
Node B
(a) Use Kirchhoff's Junction Law to write an equation containing I1, I2, and I3.
(b) Apply Kirchhoff's Loop Law to the loops indicated on the diagram to write two equatio
linking the following quantities: Iı, 2, I3, R1, R2, R3, ɛ1, and E2.
Transcribed Image Text:C2. Consider the circuit shown to the right, with current labels and directions indicated. +E, - -Ez+ Node A R1 R3 R2 Loop 1 Loop 2 Node B (a) Use Kirchhoff's Junction Law to write an equation containing I1, I2, and I3. (b) Apply Kirchhoff's Loop Law to the loops indicated on the diagram to write two equatio linking the following quantities: Iı, 2, I3, R1, R2, R3, ɛ1, and E2.
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