3.1 A parallel plate capacitor filled with mica having gr = 5 is connected to a 10 V battery. The area of the parallel plate is 6 m2 and separation distance is 6 mm. (a) Find the capacitance and stored charge. (b) After the capacitor is fully charged, the battery is disconnected and the dielectric is removed carefully. Calculate the new values of capacitance, stored energy and charge. 3.2 Find the equivalent capacitance between P and Q for the configuration shown below in the figure (a).

Delmar's Standard Textbook Of Electricity
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Chapter21: Resistive-capacitive Series Circuits
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b. Removal of its iron core.
c. Spacing the turns of wire farther apart.
2.12 Define the term inductive reactance.
QUESTION3 (
3.1 A parallel plate capacitor filled with mica having er = 5 is
connected
to a 10 V battery. The area of the parallel plate is 6 m2 and
separation
distance is 6 mm.
(a) Find the capacitance and stored charge.
(b) After the capacitor is fully charged, the battery is
disconnected and the
dielectric is removed carefully.
Calculate the new values of capacitance, stored energy and
charge.
3.2 Find the equivalent capacitance between P and Q for
the configuration
shown below in the figure (a).
4µF
(a)
(b)
(c)
(d)
Transcribed Image Text:8:01 PM 46.l b. Removal of its iron core. c. Spacing the turns of wire farther apart. 2.12 Define the term inductive reactance. QUESTION3 ( 3.1 A parallel plate capacitor filled with mica having er = 5 is connected to a 10 V battery. The area of the parallel plate is 6 m2 and separation distance is 6 mm. (a) Find the capacitance and stored charge. (b) After the capacitor is fully charged, the battery is disconnected and the dielectric is removed carefully. Calculate the new values of capacitance, stored energy and charge. 3.2 Find the equivalent capacitance between P and Q for the configuration shown below in the figure (a). 4µF (a) (b) (c) (d)
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