RI R2 CI R3 R4 R1-6 Ω ,R2-11 Ω, R3-17 Ω, R4=23 Q, C1=17 µF , C2=20 µF, and V=64 V. There is no charged capacitors at initially. The battery has not internal resistance. after closing the Switch S for a long time, calculate the potential over the C2 capacitor. (Your result must be in units of Volts and include 2 digits after the decimal point. 2% error will be accepted in your answer.) ww ww
RI R2 CI R3 R4 R1-6 Ω ,R2-11 Ω, R3-17 Ω, R4=23 Q, C1=17 µF , C2=20 µF, and V=64 V. There is no charged capacitors at initially. The battery has not internal resistance. after closing the Switch S for a long time, calculate the potential over the C2 capacitor. (Your result must be in units of Volts and include 2 digits after the decimal point. 2% error will be accepted in your answer.) ww ww
Physics for Scientists and Engineers, Technology Update (No access codes included)
9th Edition
ISBN:9781305116399
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter25: Electric Potential
Section: Chapter Questions
Problem 25.1OQ: In a certain region of space, the electric field is zero. From this fact, what can you conclude...
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R1=6 Ω, R2=11 Ω, R3=17 Ω, R4=23 Ω , C1=17 µF , C2=20 µF, and V=64 V. There is no charged capacitors at initially. The battery has not internal resistance. after closing the Switch S for a long time, calculate the potential over the C2 capacitor. (Your result must be in units of Volts and include 2 digits after the decimal point. 2% error will be accepted in your answer.)
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