For R1=R1=3 kΩkΩ, R2=R2=4 kΩkΩ, R3=R3=2 kΩkΩ, and a source E=E=219 VV, find the total resistance of this circuit.  2.For R1=R1=3 kΩkΩ, R2=R2=4 kΩkΩ, R3=R3=2 kΩkΩ, and a source E=E=219 VV, find the current flow through the main line.  3.For R1=R1=3 kΩkΩ, R2=R2=4 kΩkΩ, R3=R3=2 kΩkΩ, and a source E=E=219 VV, find the current flow through the resistors R1R1 and R2R2 4.For R1=R1=3 kΩkΩ, R2=R2=4 kΩkΩ, R3=R3=2 kΩkΩ, and a source E=E=219 VV, find the current flow through the resistor R3R3. 5.For R1=R1=3 kΩkΩ, R2=R2=4 kΩkΩ, R3=R3=2 kΩkΩ, and a source E=E=219 VV, find the power comsummed by resitor R2R2. 6.For R1=R1=3 kΩkΩ, R2=R2=4 kΩkΩ, R3=R3=2 kΩkΩ, and a source E=E=219 VV, find the power comsummed by resitor R3R3 7.For R1=R1=3 kΩkΩ, R2=R2=4 kΩkΩ, R3=R3=2 kΩkΩ, and a source E=E=219 VV, find the power delivered by the source.

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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1. For R1=R1=3 kΩkΩ, R2=R2=4 kΩkΩ, R3=R3=2 kΩkΩ, and a source E=E=219 VV, find the total resistance of this circuit. 

2.For R1=R1=3 kΩkΩ, R2=R2=4 kΩkΩ, R3=R3=2 kΩkΩ, and a source E=E=219 VV, find the current flow through the main line

3.For R1=R1=3 kΩkΩ, R2=R2=4 kΩkΩ, R3=R3=2 kΩkΩ, and a source E=E=219 VV, find the current flow through the resistors R1R1 and R2R2

4.For R1=R1=3 kΩkΩ, R2=R2=4 kΩkΩ, R3=R3=2 kΩkΩ, and a source E=E=219 VV, find the current flow through the resistor R3R3.

5.For R1=R1=3 kΩkΩ, R2=R2=4 kΩkΩ, R3=R3=2 kΩkΩ, and a source E=E=219 VV, find the power comsummed by resitor R2R2.

6.For R1=R1=3 kΩkΩ, R2=R2=4 kΩkΩ, R3=R3=2 kΩkΩ, and a source E=E=219 VV, find the power comsummed by resitor R3R3

7.For R1=R1=3 kΩkΩ, R2=R2=4 kΩkΩ, R3=R3=2 kΩkΩ, and a source E=E=219 VV, find the power delivered by the source

R1
R2
R3
E
Transcribed Image Text:R1 R2 R3 E
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