Home
Class 12
PHYSICS
Consider a capacitor-charging circuit.Le...

Consider a capacitor-charging circuit.Let `Q_(1)` be the charge given to the capacitor in a time interval of 10ms and `Q_(2)` be the charge given in the next time interval of 10ms. Let `1o(mu)C`charge be deposited in a time interval `t_(1)`and the next `(10 mu C) charge is deposited in the next time interval `t_(2)`.

A

(a)`Q_(1)gtQ_(2),t_(1)gtt_(2)`.

B

(b)`Q_(1)gtQ_(2),t_(1)ltt_(2)`.

C

(c )`Q_(1)ltQ_(2),t_(1)gtt_(2)`.

D

(d)`Q_(1)ltQ_(2),t_(1)ltt_(2)`.

Text Solution

Verified by Experts

The correct Answer is:
B
Promotional Banner

Topper's Solved these Questions

  • ELECTRIC CURRENT IN CONDUCTORS

    HC VERMA|Exercise Objective 2|9 Videos
  • ELECTRIC CURRENT IN CONDUCTORS

    HC VERMA|Exercise Exercises|84 Videos
  • ELECTRIC CURRENT IN CONDUCTORS

    HC VERMA|Exercise Short Answer|17 Videos
  • DISPERSION AND SPECTRA

    HC VERMA|Exercise Exercises|11 Videos
  • ELECTRIC CURRENT THROUGH GASES

    HC VERMA|Exercise Exercises|23 Videos

Similar Questions

Explore conceptually related problems

Consider a capacitor charging circuit. Let Q_(1) be the charge given to the capacitor in time interval of 20 ms and Q_(2) be the charge given in the next time interval of 20 ms. Let 10 muC charge be deposited in a time interval t_(1) and the next 10 muC charge is deposited in the next time interval t_(2) . Then :

Consider a capacitor charging circuit. Let Q_1 be the charge given to the capacitor in time interval of 20 ms and Q_2 be the charge given in the next time interval of 20ms . Let 10 muC charge be deposited in a time interval t_1 and the next 10muC charges is deposited in the next time interval t_2 . Then

Find average speed in time interval t= 2 to t=10s

The charge on a capacitor decrease eta time in time t , when it discharging through a circuit with a time constant tau

The charge on the capacitor is initially zero. Find the charge on the capacitor as a function of time t . All resistors are of equal value R .

A charge of 40 mu C is given to a capacitor having capacitance C = 10 mu F . The stored energy in ergs is

During charging a capacitor variation of potential V of the capacitor with time t is shown as