1. Consider the circuit below. The battery has an emf of & = 30.00 V and an internal resistance of r = 1.00 2. R₂ = 18.00 2 143546 1,= ||||||||||||| 8 = 30.00 V 4₁= A (b) Find the potential drop across each resistor. V₁= V₁= V₂= V3 = V₁= V₁ = 12= r = 1.00 ΩΣ (a) Find the equivalent resistance of the circuit and the current out of the battery. Req= Ω |= (c) Find the current through each resistor. 13= #|||² V V V R₁ A VA VA A A VA = 9.00 Ω Σ R3 - 10.00 Ω = R₁ R5 = 8.00 Ω www R₁=10.00 2 Ω
1. Consider the circuit below. The battery has an emf of & = 30.00 V and an internal resistance of r = 1.00 2. R₂ = 18.00 2 143546 1,= ||||||||||||| 8 = 30.00 V 4₁= A (b) Find the potential drop across each resistor. V₁= V₁= V₂= V3 = V₁= V₁ = 12= r = 1.00 ΩΣ (a) Find the equivalent resistance of the circuit and the current out of the battery. Req= Ω |= (c) Find the current through each resistor. 13= #|||² V V V R₁ A VA VA A A VA = 9.00 Ω Σ R3 - 10.00 Ω = R₁ R5 = 8.00 Ω www R₁=10.00 2 Ω
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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![1. Consider the circuit below. The battery has an emf of & = 30.00 V and an internal resistance of r =
1.00 2.
R₂ = 18.00 2
12=
13=
14
& 30.00 V
P₂=
P3=
P₁ =
Ps=
· = 1.00 ΩΣ
sup
V
✔V
✔V
✔V
V
A
VA
VA
VA
A
THE
R₁ = 10.00 2
(a) Find the equivalent resistance of the circuit and the current out of the battery.
Req
√2
A
(b) Find the potential drop across each resistor.
V₁=
V₁ =
V₂=
V3=
V₁=
V₁ =
(c) Find the current through each resistor.
1,₁=
4₁ =
W
R₁
(d) Find the power dissipated by each resistor.
P₁=
P₁ =
W
W
W
✔W
W
R3
= 9.00 Ω Σ
(e) Find the total power supplied by the battery.
P
VW
- 10.00 Ω
R5 = 8.00
www
=](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fec99e2ce-f146-4dfd-8358-2828b726596b%2F2f6dd18b-ce6e-4ed8-bc72-a541334b00af%2Ftp7fp6n_processed.jpeg&w=3840&q=75)
Transcribed Image Text:1. Consider the circuit below. The battery has an emf of & = 30.00 V and an internal resistance of r =
1.00 2.
R₂ = 18.00 2
12=
13=
14
& 30.00 V
P₂=
P3=
P₁ =
Ps=
· = 1.00 ΩΣ
sup
V
✔V
✔V
✔V
V
A
VA
VA
VA
A
THE
R₁ = 10.00 2
(a) Find the equivalent resistance of the circuit and the current out of the battery.
Req
√2
A
(b) Find the potential drop across each resistor.
V₁=
V₁ =
V₂=
V3=
V₁=
V₁ =
(c) Find the current through each resistor.
1,₁=
4₁ =
W
R₁
(d) Find the power dissipated by each resistor.
P₁=
P₁ =
W
W
W
✔W
W
R3
= 9.00 Ω Σ
(e) Find the total power supplied by the battery.
P
VW
- 10.00 Ω
R5 = 8.00
www
=
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