The voltage across the 16 resistor in the circuit in the figure is 128 V, positive at the upper terminal, the source voltage is 200 V. (Figure 1) Part A Find the power dissipated in each resistor. Enter your answers separated by commas. P7, P15 , P5, P30 N. P16 = Submit Part B Psup = Request Answer Submit Find the power supplied by the 200 V ideal voltage source. Express your answer with the appropriate units. Value VE ΑΣΦ Request Answer Units ↓↑ ? vec ? W

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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Vg
+
ΖΩ,
30 Ω
www
5Ω
15 Ω
16 Ω
Transcribed Image Text:Vg + ΖΩ, 30 Ω www 5Ω 15 Ω 16 Ω
The voltage across the 16 resistor in the circuit in the
figure is 128 V, positive at the upper terminal, the
source voltage is 200 V. (Figure 1)
Part A
Find the power dissipated in each resistor.
Enter your answers separated by commas.
P7 Ω, P15 Ω, Ὁ5 Ω, p30 Ω, Ῥ16 Ω =
Submit
Part B
Psup =
Request Answer
Find the power supplied by the 200 V ideal voltage source.
Express your answer with the appropriate units.
Submit
Value
Request Answer
ΑΣΦ ↓↑ vec
Units
W
Transcribed Image Text:The voltage across the 16 resistor in the circuit in the figure is 128 V, positive at the upper terminal, the source voltage is 200 V. (Figure 1) Part A Find the power dissipated in each resistor. Enter your answers separated by commas. P7 Ω, P15 Ω, Ὁ5 Ω, p30 Ω, Ῥ16 Ω = Submit Part B Psup = Request Answer Find the power supplied by the 200 V ideal voltage source. Express your answer with the appropriate units. Submit Value Request Answer ΑΣΦ ↓↑ vec Units W
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