In the adjacent circuit, the voltages and values of resistance are unknown. The value of the current running through R1 is 2.9 mA going from left to right, and the current through R3 is 10.9 mA from the top of R3 to the bottom. If we remove battery 2 and replace it with a short The current through RI becomes 12mA and the current through R3 becomes 8 mA. What is the value of the current through R2 (in mA) when battery 2 is connected back while batteryl is removed and replaced with a short?: R1 R2 R3 V1 V2 O a. 9.80 O b. 4.00 O c. 8.00 O d. 12.00 O e. 17.80

Physics for Scientists and Engineers, Technology Update (No access codes included)
9th Edition
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Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter28: Direct-current Circuits
Section: Chapter Questions
Problem 28.3OQ: The terminals of a battery are connected across two resistors in series. The resistances of the...
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In the adjacent circuit, the voltages and values of resistance are unknown. The value of the current running through R1 is 2.9 mA going from left to right, and the current through R3 is 10.9 mA from the top of R3 to the bottom.
If we remove battery 2 and replace it with a short The current through R1 becomes 12mA and the current through R3 becomes 8 mA. What is the value of the current through R2 (in mA) when battery 2 is connected back while
battery1 is removed and replaced with a short?:
R1
R2
R3
V1
V2
O a. 9.80
O b. 4.00
O c. 8.00
O d. 12.00
O e. 17.80
Transcribed Image Text:In the adjacent circuit, the voltages and values of resistance are unknown. The value of the current running through R1 is 2.9 mA going from left to right, and the current through R3 is 10.9 mA from the top of R3 to the bottom. If we remove battery 2 and replace it with a short The current through R1 becomes 12mA and the current through R3 becomes 8 mA. What is the value of the current through R2 (in mA) when battery 2 is connected back while battery1 is removed and replaced with a short?: R1 R2 R3 V1 V2 O a. 9.80 O b. 4.00 O c. 8.00 O d. 12.00 O e. 17.80
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