10 > In the circuit shown in the figure, VA = Vis = 22.0 V and R = R; = Ry = R = Rs = 75.0 2. Current I, flows to the left through R, and / = 0.330 A. %3D %3D R, Determine the current /; flowing through R2. Assume the direction of positive current flow is downward through R2. R Is = VB R. Determine the voltage V, across R. R, Determine the power Ps dissipated by Rs.

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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10 >
In the circuit shown in the figure, VA = Vis = 22.0 V and
R = R; = Ry = R = Rs = 75.0 2. Current I, flows to the
left through R, and / = 0.330 A.
%3D
%3D
R,
Determine the current /, flowing through R2. Assume the
direction of positive current flow is downward through R2.
R
I =
R
B
Determine the voltage V across R.
R,
V
Determine the power Ps dissipated by Rs.
ww
Transcribed Image Text:10 > In the circuit shown in the figure, VA = Vis = 22.0 V and R = R; = Ry = R = Rs = 75.0 2. Current I, flows to the left through R, and / = 0.330 A. %3D %3D R, Determine the current /, flowing through R2. Assume the direction of positive current flow is downward through R2. R I = R B Determine the voltage V across R. R, V Determine the power Ps dissipated by Rs. ww
I2 =
A
Determine the voltage V4 across R4.
V4 =
V
Determine the power Ps dissipated by R5.
P5 =
W
Transcribed Image Text:I2 = A Determine the voltage V4 across R4. V4 = V Determine the power Ps dissipated by R5. P5 = W
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