Home
Class 11
PHYSICS
A 220 V AC supply is connected between p...

A 220 V AC supply is connected between points A and B . What will be the potential difference V across the capacitor ?

A

220V

B

110V

C

0V

D

`220sqrt(2)V`

Text Solution

Verified by Experts

The correct Answer is:
D
Promotional Banner

Topper's Solved these Questions

  • SEMICONDUCTORS AND ELECTRONIC DEVICES

    DC PANDEY|Exercise More than One Option is Correct|3 Videos
  • ROTATIONAL MOTION

    DC PANDEY|Exercise Integer Type Questions|17 Videos
  • SIMPLE HARMONIC MOTION

    DC PANDEY|Exercise Integer type questions|14 Videos

Similar Questions

Explore conceptually related problems

A 220 V AC supply is connected between points A and B. What will be potential difference across capacitor C ?

A 220 V ac supply is connected between points A and B as shown 220 V in figure. What will be the potential AC difference V across the capacitor?

An electrical heater and a capacitor are joined in series across a 220V, 50Hz, AC supply. The potential difference across the heater is 90V . The potential difference across the capacitor will be about:

A capacitor of capacity 2 muF is charged to a potential difference of 12 V . It is then connected across an inductor of inductance 6 mu H . What is the current (in A ) in the circuit at a time when the potential difference across the capacitor is 6.0 V ?

A 12 pF capacitor is connected to a 50 V battery. How much electrostatic energy is stored in the capacitor ? If another capacitor of 6 pF is connected across the combination, find the charge stored and potential difference across each capacitor.

In this diagram,the potential difference A and B is 60V .The potential difference across 6 mu F capacitor is

Two, capacitors A and B are connected in series across a 100 V supply and it is observed that the potential difference across them are 60 V and 40 V . A capacitor of 2 p.F capacitance is now connected in parallel with A and the potential difference across B rises to 90 V . Determine the capacitance of A and B

A 10 muF capacitor is charged to a potential difference of 1000 V . The terminals of the charged capacitor are disconnected from the power supply and connected to the terminals of an uncharged 6 muF capacitor. What is the final potential difference across each capacitor ?