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A capacitance C charged to a potential d...

A capacitance C charged to a potential difference V is discharged by connecting its plates through a resistance R. Find the heat dissipated in one time constant after the connections are made. Do this by calculating `int i^(2)Rdt`and also by finding the decrease in the energy stored in the capacitor.

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Energy stored at a part time in discharging
` = 1/2 cv^2 (1 - t/rc)^2 `
` Heat dissipated at any time `
= Energy stored at time 0
- energy stored at time `t`
` = 1/2 cv^(2) - 1/2 cv^2 (e^-1)^2 `
`= 1/2 (cv^2) (1- (e^-2))` .
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HC VERMA-ELECTRIC CURRENT IN CONDUCTORS-Exercises
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  6. How many time constants will elapse before the current in a charging R...

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  7. How many time constants will elapse before the charge on a capacitor f...

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  8. How many time constants will elapse before the energy stored in the ca...

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  9. how many time constants will elapse before the power delovered by the ...

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  10. A capacitor of capacitance C is connected to a battery of emf (epsilon...

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  11. A capacitor of capacitance 12(mu)Fis connected to a battery of emf 6.0...

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  12. A capacitance C charged to a potential difference V is discharged by c...

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  13. By evaluating int i^(2)Rdt,show that when a capacitor is charged by co...

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  14. A parallel-plate capacitor is filled with a delectric meterial having ...

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  15. Find the charge on each of the capacitor 0.20ms after the switch S is ...

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  16. The switch S shown in figure is kept closed for a long time and is the...

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  17. A capacitor of capacitance 100(mu)F is connected across a battery of e...

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  18. Consider the situation shown in figure.The switch is closed at t=0when...

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  19. A capacitor of capacitance C is given a charge Q. At t=0,it is connect...

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