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Two charged capacitor have their outer plates fixed and inner plates connected by a spring of force constant k . The charge on each capacitor is q . Find the extension in the spring at equilibrium-




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Important Questions on Capacitance

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Three identical capacitors C1,C2 and C3 have a capacitance of 1.0 μF each and they are uncharged initially. They are connected in a circuit as shown in the figure and C1 is then filled completely with a dielectric material of relative permittivity ϵr . The cell electromotive force (emf) V 0  = 8 V . First the switch S1 is closed while the switch S2 is kept open. When the capacitor C3 is fully charged, S1 is opened and S2 is closed simultaneously. When all the capacitors reach equilibrium, the charge on C3 is found to be 5 μC . The value of ϵr =____________.

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EASY
The capacitance of a parallel plate capacitor with air as medium is 6 μF. With the introduction of a dielectric medium, the capacitance becomes 30 μF. The permittivity of the medium is:
ε0=8.85×1012 C2 N1 m2
HARD
A parallel plate capacitor with air between the plates has a capacitance of 9 pF. The separation between the plates is d. The space between the plates is now filled with two dielectrics constant K1=3 and thickness d3 while the other one has dielectric constant K2=6 and thickness 2d3. Capacitance of the capacitor is now 
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A parallel plate capacitor with square plates is filled with four dielectrics of dielectric constants K1, K2, K3, K4 arranged as shown in the figure. The effective dielectric constant K will be:

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MEDIUM
Voltage rating of a parallel plate capacitor is 500 V. Its dielectric can withstand a maximum electric field of 106 V m-1. The plate area is 10-4 m2 . What is the dielectric constant if the capacitance is 15 pF ?
givenϵ0=8.86×10-12 C2 N-1 m-2
MEDIUM
An uncharged parallel plate capacitor filled with an oil is connected in parallel with an identical but air filled capacitor charged to a potential V1. If the common potential is V2, the dielectric constant of the oil is
HARD

A parallel-plate capacitor of area A, plate separation d and capacitance C is filled with four dielectric materials having dielectric constants k1k2k3 and k4 as shown in the figure below. If a single dielectric material is to be used to have the same capacitance  C in this capacitor, then its dielectric constant  k is given by

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EASY
A parallel plate capacitor has a capacity C. The separation between the plates is doubled and a dielectric medium is inserted between the plates. If the capacity is 3 C, then the dielectric constant of the medium will be
HARD
Two identical parallel plate capacitors, of capacitance C each, have plates of area A, separated by a distance d . The space between the plates of the two capacitors, is filled with three dielectrics, of equal thickness and dielectric constants K1, K2 and K3 . The first capacitor is filled as shown in figure I, and the second one is filled as shown in figure II.
If these two modified capacitors are charged by the same potential V , the ratio of the energy stored in the two, would be (E1 refers to capacitor I and E2 to capacitor (II) ):
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MEDIUM
Two thin dielectric slabs of dielectric constants K1 and K2K1<K2 are inserted between plates of a parallel plate capacitor, as shown in the figure. The variation of electric field ‘ E ’ between the plates with distance ‘ d ’ as measured from plate P is correctly shown by:
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HARD
The insulated plates of a charged parallel plate capacitor (with small separation between the plates) are approaching each other due to electrostatic attraction. Assuming no other force to be operative and no radiation taking place, which of the following graphs approximately shows the variation with time (t) of the potential difference (V) between the plates?
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Two parallel plate air capacitors of the same capacity C are connected in series to a battery of emf E. Then one of the capacitors is completely filled with the dielectric material of constant K. The change in the effective capacitance of the series combination is
HARD
A capacitor is kept connected to a battery and a dielectric slab is inserted between the plates. During the process
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The capacitance of a parallel plate capacitor becomes 43 times its original value if a dielectric slab of thickness t=d2 is inserted between the plates (where d is the distance of separation between the plates). What is the dielectric constant of the slab?
HARD
The region between the parallel plates of a capacitor is filled with parallel layers of air and paper (of dielectric constant 4). The space between the plates is 1 mm and the thickness of paper is 0.75 mm. The ratio of the voltages across air and paper is
HARD

A simple pendulum of mass ' m ', length ' l ' and charge '+q' suspended in the electric field produced by two conducting parallel plates as shown. The value of deflection of pendulum in equilibrium position will be

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MEDIUM
A parallel plated capacitor has area 2 m2 separated by 3 dielectric slabs. Their relative permittivity is 2 , 3, 6 and thickness is 0.4 mm, 0.6 mm, 1.2 mm respectively. The capacitance is
EASY
A capacitance of a parallel plate air capacitor is 10μF. Dielectric constant of the medium to be introduced in between its plates to double its capacitance is
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A parallel plate capacitor of capacitance 90 pF is connected to a battery of EMF 20 V. If a dielectric material of dielectric constant K=53 is inserted between the plates, the magnitude of the induced charge will be:
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A parallel plate air capacitor has capacity C, distance of separation between plates is d and potential difference V is applied between the plates. The force of attraction between the plates of the capacitor is