Two capacitors are connected in series. The potential difference across both capacitors together (not across each one separately) is 48V. The capacitance of the first capacitor is 150NF and the capacitance of the second is 120nF. Find a) the total charge stored b) the charge on each capacitor c) the total energy stored in the network d) The energy stored in each capacitor e) The potential difference across each capacitor.

University Physics Volume 2
18th Edition
ISBN:9781938168161
Author:OpenStax
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Chapter8: Capacitance
Section: Chapter Questions
Problem 39P: A 2.0F capacitor and a 4.0F capacitor are connected in series across a 1.0-kV potential. The charged...
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Two capacitors are connected in series. The potential difference across both capacitors together
(not across each one separately) is 48V. The capacitance of the first capacitor is 150NF and the
capacitance of the second is 120nF. Find
a) the total charge stored
b) the charge on each capacitor
c) the total energy stored in the network
d) The energy stored in each capacitor
e) The potential difference across each capacitor.
Transcribed Image Text:Two capacitors are connected in series. The potential difference across both capacitors together (not across each one separately) is 48V. The capacitance of the first capacitor is 150NF and the capacitance of the second is 120nF. Find a) the total charge stored b) the charge on each capacitor c) the total energy stored in the network d) The energy stored in each capacitor e) The potential difference across each capacitor.
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