The circuit in the figure below contains a 90.0 V battery and four capacitors. In the top parallel branch, there are two capacitors, one with a capacitance of C₁ = 1.00 μF and another with a capacitance of 6.00 uF. In the bottom parallel branch, there are two more capacitors one with a capacitance of 2.00 µF and another with a capacitance of C₂ = 7.00 uF. 6.00 μF 2.00 μF 90.0 V C Ⓒ (a) What is the equivalent capacitance (in µF) of the entire circuit? UF (b) What is the charge (in μC) on each capacitor? on C₁ μC on C₂ μC on the 6.00 uF capacitor με μC on the 2.00 µF capacitor (c) What is the potential difference (in V) across each capacitor? across C₂ V across C₂ across the 6.00 μF capacitor across the 2.00 μF capacitor V V V

Principles of Physics: A Calculus-Based Text
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Chapter20: Electric Potential And Capacitance
Section: Chapter Questions
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The circuit in the figure below contains a 90.0 V battery and four capacitors. In the top parallel branch, there are two capacitors, one with a capacitance of C₁ = 1.00 µF and another with a capacitance of 6.00 µF. In the bottom parallel branch, there are two more capacitors,
one with a capacitance of 2.00 µF and another with a capacitance of C₂ = 7.00 μF.
C₁
2.00 με
6.00 με
HA
Ho
+
90.0 V
(a) What is the equivalent capacitance (in µF) of the entire circuit?
μF
(b) What is the charge (in μC) on each capacitor?
on C₁
μC
on C₂
UC
on the 6.00 uF capacitor
μC
on the 2.00 μF capacitor
μC
(c)
What is the potential difference (in V) across each capacitor?
across C₁
V
across C₂
V
across the 6.00 μF capacitor
V
across the 2.00 μF capacitor
V
Transcribed Image Text:The circuit in the figure below contains a 90.0 V battery and four capacitors. In the top parallel branch, there are two capacitors, one with a capacitance of C₁ = 1.00 µF and another with a capacitance of 6.00 µF. In the bottom parallel branch, there are two more capacitors, one with a capacitance of 2.00 µF and another with a capacitance of C₂ = 7.00 μF. C₁ 2.00 με 6.00 με HA Ho + 90.0 V (a) What is the equivalent capacitance (in µF) of the entire circuit? μF (b) What is the charge (in μC) on each capacitor? on C₁ μC on C₂ UC on the 6.00 uF capacitor μC on the 2.00 μF capacitor μC (c) What is the potential difference (in V) across each capacitor? across C₁ V across C₂ V across the 6.00 μF capacitor V across the 2.00 μF capacitor V
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