Build the circuit shown in the schematic below, using a total of six 1002 resistors in three paths, connected across 5V from the PSB. R4 100 Q R2 100 Q PSB (+ R1 R5 100 Q 5 V 100 Q R3 100 Q R6 100 Q

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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How do I do the circuit shown in the schematic in a breadboard
hal to the Pèsistance in that path, meaning that greater resistance in a path allows less current to flow. In o
treated like a separate series (even if the path only has one component).
STEP 1
Build the circuit shown in the schematic below, using a total of six 1002 resistors in three paths, connected across 5V from the PSB.
R4
100 Q
R2
100 Q
PSB
R1
100 Q
R5
100 Q
5 V
R3
100 Q
R6
100 Q
Path 1 has a single resistor, R1. Path 2 contains 2 resistors, R2 and R3. Path 3 has three resistors in series, R4, R5, and R6. Although the resi
nominal value of 1002, each path has a different resistance depending on the number of resistors in that path. The resistor values chosen fo
resistance of each path simple to determine, since you are simply adding 100 for each resistor in the path.
You have learned enough by now to predict the voltage across each path and each resistor in this circuit.
• What voltage do you expect across Path 1? Path 2? Path 3?
. Will they be the same? Why, or why not?
• What voltage do you expect across R1?
What voltage do you expect across R2?
le it the came as the voltage acrocc R32 Why or whynot?
thing
95%
Transcribed Image Text:hal to the Pèsistance in that path, meaning that greater resistance in a path allows less current to flow. In o treated like a separate series (even if the path only has one component). STEP 1 Build the circuit shown in the schematic below, using a total of six 1002 resistors in three paths, connected across 5V from the PSB. R4 100 Q R2 100 Q PSB R1 100 Q R5 100 Q 5 V R3 100 Q R6 100 Q Path 1 has a single resistor, R1. Path 2 contains 2 resistors, R2 and R3. Path 3 has three resistors in series, R4, R5, and R6. Although the resi nominal value of 1002, each path has a different resistance depending on the number of resistors in that path. The resistor values chosen fo resistance of each path simple to determine, since you are simply adding 100 for each resistor in the path. You have learned enough by now to predict the voltage across each path and each resistor in this circuit. • What voltage do you expect across Path 1? Path 2? Path 3? . Will they be the same? Why, or why not? • What voltage do you expect across R1? What voltage do you expect across R2? le it the came as the voltage acrocc R32 Why or whynot? thing 95%
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