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Answer the following: (a) The top of t...

Answer the following:
(a) The top of the atmosphere is at about 400 kV with respect to the surface of the earth, corresponding to an electric field that decreases with altitude. Near the surface of the earth, the field is about `100 Vm^(-1)`. Why then do we not get an electric shock as we step out of our house into the open? (Assume the house to be a steel cage so there is no field inside!)
(b) A man fixes outside his house one evening a two metre high insulating slab carrying on its top a large aluminium sheet of area `1m^(2)`. Will he get an electric shock if he touches the metal sheet next morning?
(c) The discharging current in the atmosphere due to the small conductivity of air is known to be 1800 A on an average over the globe. Why then does the atmosphere not discharge itself completely in due course and become electrically neutral? In other words, what keeps the atmosphere charged?
(d) What are the forms of energy into which the electrical energy of the atmosphere is dissipated during a lightning? (Hint: The earth has an electric field of about `100 Vm^(-1)` at its surface in the downward direction, corresponding to a surface charge density `= 10^(-9)C m^(-2)`. Due to the slight conductivity of the atmosphere up to about 50 km (beyond which it is good conductor), about `+ 1800 C` is pumped every second into the earth as a whole. The earth, however, does not get discharged since thunderstorms and lightning occurring continually all over the globe pump an equal amount of negative charge on the earth.)

Text Solution

Verified by Experts

(a) Our body and the ground form an equipotential surface. As we step out into the open, the original equipotential surfaces of open air change, keeping our head and the ground at the same potential.
(b) Yes. The steady discharging current in the atmosphere charges up the aluminium sheet gradually and raises its voltage to an extent depending on the capacitance of the capacitor (formed by the sheet, slab and the ground).
(c) The atmosphere is continually being charged by thunderstorms and lightning all over the globe and discharged through regions of ordinary weather. The two opposing currents are, on an average, in equilibrium.
(d) Light energy involved in lightning, heat and sound energy in the accompanying thunder.
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NCERT TAMIL-ELECTROSTATIC POTENTIAL AND CAPACITANCE -EXERCISES
  1. A long charged cylinder of linear charge density lambda is surrounde...

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  2. In a hydrogen atom, the electron and proton are bound at a distance of...

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  3. If one of the two electrons of a hydrogen molecule is removed, we get ...

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  4. Two charged conducting spheres of radii a and b are connected to eac...

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  5. Two charges -q and +q are located at points (0, 0, –a) and (0, 0, a), ...

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  6. Figure shows a charge array known as an electric quadrupole. For a poi...

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  7. An electrical technician requires a capacitance of 2 muF in a circuit ...

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  8. What is the area of the plates of a 2 F parallel plate capacitor, give...

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  9. Obtain the equivalent capacitance of the network in figure below. For ...

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  10. The plates of a paralllel plate capacitor have an area of 90 cm^(2) e...

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  11. A 4 muF capacitor is charged by a 200 V supply. It is then disconnect...

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  12. Show that the force on each plate of a parallel plate capacitor has a ...

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  13. A spherical capacitor consists of two concentric spherical conductors,...

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  14. A spherical capacitor has an inner sphere of radius 12 cm and an oute...

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  15. Answer carefully: (a) Two large conducting spheres carrying charges ...

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  16. A cylindrical capacitor has two co-axial cylinders of length 15 cm a...

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  17. A parallel plate capacitor is to be designed with a voltage rating 1 K...

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  18. Describe schematically the equipotential surfaces corresponding to (...

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  19. A small sphere of radius r(1) and charge q(1) is enclosed by a spheri...

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  20. Answer the following: (a) The top of the atmosphere is at about 400 ...

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