Step 5: Calculate the voltage across resistor R6 (VR6) [mV]. Use the resistance values from step 3 as follow R5 = 211.51ohm and R6 = 1420.86ohm. For the calculation of VR5 close Switch 1 and leave Switch 2 open. For the calculation of VR6 close Switch 2 and leave Switch 1 open. Use the circuit diagram of figure 1.
Step 5: Calculate the voltage across resistor R6 (VR6) [mV]. Use the resistance values from step 3 as follow R5 = 211.51ohm and R6 = 1420.86ohm. For the calculation of VR5 close Switch 1 and leave Switch 2 open. For the calculation of VR6 close Switch 2 and leave Switch 1 open. Use the circuit diagram of figure 1.
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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Step 5: Calculate the voltage across resistor R6 (VR6) [mV]. Use the resistance values from step 3 as follow R5 = 211.51ohm and
R6 = 1420.86ohm. For the calculation of VR5 close Switch 1 and leave Switch 2 open. For the calculation of VR6 close Switch 2 and leave Switch 1 open. Use the circuit diagram of figure 1.
Step 6: Calculate the maximum power absorbed by resistor R5 (PR5)
[μW] and the maximum power absorbed by resistor R6 (PR6) [μW]. Use the resistance values from step 3 as follow R5= RTh(a,b) and R6 = RTh(b,c).
Vs = 1.5V
R1 = 4700ohm
R2 = 2200ohm
R3 = 6800ohm
R4 = 2700ohm
VR2 = 0.253V
VR4 = 0.311V
VR5 = 254mV
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