3 Four capacitors are connected as shown in the figure below. (Let C = 18.0 μF.) с 3.00 με th a 6.00 με |20.0 με HR i (a) Find the equivalent capacitance between points a and b. HF (b) Calculate the charge on each capacitor, taking AV ab = 16.0 V. 20.0 μF capacitor 6.00 μF capacitor μC μC
3 Four capacitors are connected as shown in the figure below. (Let C = 18.0 μF.) с 3.00 με th a 6.00 με |20.0 με HR i (a) Find the equivalent capacitance between points a and b. HF (b) Calculate the charge on each capacitor, taking AV ab = 16.0 V. 20.0 μF capacitor 6.00 μF capacitor μC μC
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![3 Four capacitors are connected as shown in the figure below. (Let C = 18.0 μF.)
C
3.00 μF
HE
th
a
6.00 με
20.0 με
(a) Find the equivalent capacitance between points a and b.
μF
(b) in parallel
HE
(b) Calculate the charge on each capacitor, taking AV ab = 16.0 V.
20.0 μF capacitor
6.00 μF capacitor
3.00 μF capacitor
capacitor C
UF
i
μF
4. Find the equivalent capacitance of a 4.40 µF capacitor and an 9.50 µF capacitor when they are connected as follows.
(a) in series
HC
HC
μC
HC](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fb16b8810-8b88-4aff-b63b-93e652a04643%2Fffb9a302-2ea8-4ce1-b6c4-8566cdbe54a9%2Fj3capg_processed.png&w=3840&q=75)
Transcribed Image Text:3 Four capacitors are connected as shown in the figure below. (Let C = 18.0 μF.)
C
3.00 μF
HE
th
a
6.00 με
20.0 με
(a) Find the equivalent capacitance between points a and b.
μF
(b) in parallel
HE
(b) Calculate the charge on each capacitor, taking AV ab = 16.0 V.
20.0 μF capacitor
6.00 μF capacitor
3.00 μF capacitor
capacitor C
UF
i
μF
4. Find the equivalent capacitance of a 4.40 µF capacitor and an 9.50 µF capacitor when they are connected as follows.
(a) in series
HC
HC
μC
HC
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