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A parallel plate capacitor is charged u...

A parallel plate capacitor is charged up to a potential of 300 volts. Area of the plates is `100 cm^(2)` and spacing between them is 2 cm. If the plates are moved apart to a distance of 2.5 cm without disconnected the power source, then `(in_(0)=9xx10^(-12)C^(2)N^(-1)m^(-2))`:
(i) Electric field inside the capacitor when distance when distance is 2.5 cm :

A

`6xx10^(3) V//m`

B

`3xx10^(3) V//m`

C

`12xx10^(3) V//m`

D

`15xx10^(3)V//m`

Text Solution

Verified by Experts

The correct Answer is:
D
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RESONANCE-CAPACITANCE-Exercise - 1
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  2. A parallel plate capacitor is charged up to a potential of 300 volts....

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  3. A parallel plate capacitor is charged up to a potential of 300 volts....

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  8. The magnitude of charge in steady state on either of the plates of c...

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  9. The plate separation in a parallel plate condenser and plate area is A...

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  10. In the adjoining diagram, the condenser C will be fully charged to pot...

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  11. A parallel plate capacitor of capacitance C is connected to a battery ...

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  12. In the following figure, the charge on each condenser in the steady s...

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  13. In the adjoining circuit, the capacity between the points A and B will...

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  14. The resultant capacity between the points A and B in the adjoining cir...

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  15. The effective capacity with the following figure between the points P ...

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  16. The equivalent capacitance between the terminals X and Y in the figure...

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  17. The minimum number of condensers each capacitance of 2 muF, in order t...

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  18. The charge on the condenser of capacitance 2mu F in the following circ...

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  19. Two parallel plate condensers of capacity 20 mF and 30 mF are charged ...

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  20. Seven capacitors each of capacitance 2muF are to be connected in a con...

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