In the circuit shown, R,=R,=R, and ɛ2 =. The power dissipated in R, is 20 W. Does battery & supply or absorb energy, what is the rate of energy & exchanges %3D with the circuit? Assume that the batteries are ideal. R2=R R R,=R R R Supply 1 W Supply 110 w None of them Absorb 110 W Supply 48 W Supply 220 J/s Absorb 48 W Absorb 440 J/S Supply 24 J/s Absorb 220 J/s Absorb 24 J/s Absorb 1 W Supply 440 J/S

University Physics Volume 2
18th Edition
ISBN:9781938168161
Author:OpenStax
Publisher:OpenStax
Chapter9: Current And Resistance
Section: Chapter Questions
Problem 63P: Consider a power plant is located 60 km away from a residential area uses Q-gauge (A=42.40mm2) wire...
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In the circuit shown, R1=R2=R, and ɛ2 =. The power
dissipated in R, is 20 W. Does battery & supply or
absorb energy, what is the rate of energy & exchanges
with the circuit? Assume that the batteries are ideal.
Rz=R
R
www
R
IR;=R
Ez
R
Supply 1 W
Supply 110 W
None of them
Absorb 110 W
Supply 48 W
Supply 220 J/s
Absorb 48 W
Absorb 440 J/S
Supply 24 J/s
Absorb 220 J/s
Absorb 24 J/s
Absorb 1 W
Supply 440 J/S
Transcribed Image Text:In the circuit shown, R1=R2=R, and ɛ2 =. The power dissipated in R, is 20 W. Does battery & supply or absorb energy, what is the rate of energy & exchanges with the circuit? Assume that the batteries are ideal. Rz=R R www R IR;=R Ez R Supply 1 W Supply 110 W None of them Absorb 110 W Supply 48 W Supply 220 J/s Absorb 48 W Absorb 440 J/S Supply 24 J/s Absorb 220 J/s Absorb 24 J/s Absorb 1 W Supply 440 J/S
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