A battery with Ɛ = 4.00 V and no internal resistance supplies current to the circuit shown in the figure below. When the double-throw switch S is open as shown in the figure, the current in the battery is 1.02 mA. When the switch is closed in position a, the current in the battery is 1.30 mA. When the switch is closed in position b, the current in the battery is 2.09 mA. Find the following resistances. R R2 (a) R, (b) R, (c) R3 FFF

Physics for Scientists and Engineers with Modern Physics
10th Edition
ISBN:9781337553292
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter27: Direct-current Circuits
Section: Chapter Questions
Problem 10P: A battery with emf and no internal resistance supplies current to the circuit shown in Figure...
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A battery with Ɛ = 4.00 V and no internal resistance supplies current to the circuit shown in the figure below. When the double-throw switch S is open as shown in the figure, the current in the battery is 1.02 mA.
When the switch is closed in position a, the current in the battery is 1.30 mA. When the switch is closed in position b, the current in the battery is 2.09 mA. Find the following resistances.
R1
R2
R2
S
R3
(a) R1
(b) R2
(c) R3
Transcribed Image Text:A battery with Ɛ = 4.00 V and no internal resistance supplies current to the circuit shown in the figure below. When the double-throw switch S is open as shown in the figure, the current in the battery is 1.02 mA. When the switch is closed in position a, the current in the battery is 1.30 mA. When the switch is closed in position b, the current in the battery is 2.09 mA. Find the following resistances. R1 R2 R2 S R3 (a) R1 (b) R2 (c) R3
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