A capacitor of capacitance 2 uF is charged to a potential difference of 200 V. After disconnecting from the battery, it is con- nected in parallel with another uncharged capacitor. The common potential is 40 V. The capacitance of the second capacitor is (i) 6 µF (ii) 12 µF iii) 8 µF (iv) 16 µF
A capacitor of capacitance 2 uF is charged to a potential difference of 200 V. After disconnecting from the battery, it is con- nected in parallel with another uncharged capacitor. The common potential is 40 V. The capacitance of the second capacitor is (i) 6 µF (ii) 12 µF iii) 8 µF (iv) 16 µF
Introductory Circuit Analysis (13th Edition)
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![57. A capacitor of capacitance 2 µF is charged
to a potential difference of 200 V. After
disconnecting from the battery, it is con-
nected in parallel with another uncharged
capacitor. The common potential is 40 V.
The capacitance of the second capacitor is
(i) 6 µF
(ii) 12 µF
(iii) 8 µF
(iv) 16 µF](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F8cb7556d-c56f-48a4-bb1a-7705fc98de08%2F1ce050a3-c97f-43f7-9adf-7b340f221882%2Fqgje0gf_processed.jpeg&w=3840&q=75)
Transcribed Image Text:57. A capacitor of capacitance 2 µF is charged
to a potential difference of 200 V. After
disconnecting from the battery, it is con-
nected in parallel with another uncharged
capacitor. The common potential is 40 V.
The capacitance of the second capacitor is
(i) 6 µF
(ii) 12 µF
(iii) 8 µF
(iv) 16 µF
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