Consider the circuit below. The battery has an emf of ε = 30.00 V and an internal resistance of r= 1.00 . E = 30.00 V ¦r= < 1 2 1.00 Ω This Learning Activity Contains 3 Goals 3 > +||+ sup R₁ 9.00 R5 = 8.00 Homework: Circuit Analysis 1 P = R3 = 10.00 Please answer the following question(s): 1. (d) Find the power dissipated by each resistor. P₁= W ✔ W ✔W W ✔W W P₁ = (e) Find the total power supplied by the battery. P W R₂ = 18.00 2 R₁ - 10.00 Ω =

Physics for Scientists and Engineers: Foundations and Connections
1st Edition
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter29: Direct Current (dc) Circuits
Section: Chapter Questions
Problem 19PQ
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Consider the circuit below.
The battery has an emf of ε = 30.00 V and an internal resistance of r= 1.00 .
E = 30.00 V
¦r=
< 1 2
1.00 Ω
This Learning Activity Contains 3 Goals
3 >
+||+
sup
R₁ 9.00
R5 = 8.00
Homework: Circuit Analysis 1 P
=
R3 = 10.00
Please answer the following question(s):
1. (d) Find the power dissipated by each resistor.
P₁=
W
✔ W
✔W
W
✔W
W
P₁ =
(e) Find the total power supplied by the battery.
P
W
R₂ = 18.00 2
R₁
- 10.00 Ω
=
Transcribed Image Text:Consider the circuit below. The battery has an emf of ε = 30.00 V and an internal resistance of r= 1.00 . E = 30.00 V ¦r= < 1 2 1.00 Ω This Learning Activity Contains 3 Goals 3 > +||+ sup R₁ 9.00 R5 = 8.00 Homework: Circuit Analysis 1 P = R3 = 10.00 Please answer the following question(s): 1. (d) Find the power dissipated by each resistor. P₁= W ✔ W ✔W W ✔W W P₁ = (e) Find the total power supplied by the battery. P W R₂ = 18.00 2 R₁ - 10.00 Ω =
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