13. What did you discover about the relationship between the currents flowing through two resistors connected in series (Part 3)? How do those currents compare with the current from the voltage source? What did you discover about the relationship between the currents flowing through two resistors connected in parallel (Part 4)? How do those currents compare with the current from the voltage source? If the two measured currents in your parallel circuit were not the same, which resistor had the larger current going through it? Why
13. What did you discover about the relationship between the currents flowing through two resistors connected in series (Part 3)? How do those currents compare with the current from the voltage source? What did you discover about the relationship between the currents flowing through two resistors connected in parallel (Part 4)? How do those currents compare with the current from the voltage source? If the two measured currents in your parallel circuit were not the same, which resistor had the larger current going through it? Why
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
Problem 1P: Visit your local library (at school or home) and describe the extent to which it provides literature...
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Concept explainers
KVL and KCL
KVL stands for Kirchhoff voltage law. KVL states that the total voltage drops around the loop in any closed electric circuit is equal to the sum of total voltage drop in the same closed loop.
Sign Convention
Science and technology incorporate some ideas and techniques of their own to understand a system skilfully and easily. These techniques are called conventions. For example: Sign conventions of mirrors are used to understand the phenomenon of reflection and refraction in an easier way.
Question
13. What did you discover about the relationship between the currents flowing through two resistors connected in series (Part 3)? How do those currents compare with the current from the voltage source?
What did you discover about the relationship between the currents flowing through two resistors connected in parallel (Part 4)? How do those currents compare with the current from the voltage source?
If the two measured currents in your parallel circuit were not the same, which resistor had the larger current going through it? Why?
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4
R
F
In Figure 3 below, we have two resistors in series, and there is an ammeter in between the
resistors as well as an ammeter to the right of the 47-ohm resistor.
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Series
L
Figure 3
11. Determine what the current values should be for each of the following empty cells in the
table below. Assume that the power supply is set t o a voltage of 5.000 V. Show your
calculations and/or explain how you determined what values for current go in each cell.
T
G
Q Search
40
6
V
R₁ (2)
33
LY
H
| 33 ი
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7
Part 3: Currents in Series
₁ (A)
R₂ (22)
47
C
*
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1₂ (A)
-
P
Isource (A)
.
12+
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Transcribed Image Text:$
4101
4
R
F
In Figure 3 below, we have two resistors in series, and there is an ammeter in between the
resistors as well as an ammeter to the right of the 47-ohm resistor.
%
Series
L
Figure 3
11. Determine what the current values should be for each of the following empty cells in the
table below. Assume that the power supply is set t o a voltage of 5.000 V. Show your
calculations and/or explain how you determined what values for current go in each cell.
T
G
Q Search
40
6
V
R₁ (2)
33
LY
H
| 33 ი
&
wwwww I
7
Part 3: Currents in Series
₁ (A)
R₂ (22)
47
C
*
47
J
+
00
(
9
K
▶11
)
1₂ (A)
-
P
Isource (A)
.
12+
{
+
[
?
prt sc
1}
1
delete
backspace
![Part 4: Currents in a Parallel Circuit
In Figure 4 below, we show circuit diagrams in which we have connected a parallel circuit
using the 33 ohm resistor and the 47 ohm resistor. In the left panel we show the circuit with
two ammeters, one wired in series with each of the two resistors, which will measure the
current through each resistor individually. In the right panel, a single ammeter is placed after
the parallel resistor combination, in order to measure the total current output from the voltage
source.
V
332
Parallel
www.I
470
12. Determine what the current values should be for each of the following empty cells in the
table below. Assume that the power supply is set to a voltage of 5.000 V. Show your
calculations and/or explain how you determined what values for current go in each cell.
R₁ (22)
33
V
Pe
33 n
www
www
470
Figure 4
Part IV: Currents in Parallel
R₂ (12)
47
1₁ (A)
12 (A)
I source (A)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F1b289aac-ebf1-442b-a146-e02736152c7d%2F20ae771a-314a-4bb4-88f7-411500ef0d4b%2F0tbvne8_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Part 4: Currents in a Parallel Circuit
In Figure 4 below, we show circuit diagrams in which we have connected a parallel circuit
using the 33 ohm resistor and the 47 ohm resistor. In the left panel we show the circuit with
two ammeters, one wired in series with each of the two resistors, which will measure the
current through each resistor individually. In the right panel, a single ammeter is placed after
the parallel resistor combination, in order to measure the total current output from the voltage
source.
V
332
Parallel
www.I
470
12. Determine what the current values should be for each of the following empty cells in the
table below. Assume that the power supply is set to a voltage of 5.000 V. Show your
calculations and/or explain how you determined what values for current go in each cell.
R₁ (22)
33
V
Pe
33 n
www
www
470
Figure 4
Part IV: Currents in Parallel
R₂ (12)
47
1₁ (A)
12 (A)
I source (A)
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