If potential in a region is expressed as the electric field at point is:
1. | 2. | ||
3. | 4. |
A parallel plate air capacitor has capacitance the distance of separation between plates is and potential difference is applied between the plates. The force of attraction between the plates of the parallel plate air capacitor is:
1. | 2. | ||
3. | 4. |
A parallel plate air capacitor of capacitance is connected to a cell of emf and then disconnected from it. A dielectric slab of dielectric constant which can just fill the air gap of the capacitor is now inserted in it. Which of the following is incorrect?
1. | The potential difference between the plates decreases times. |
2. | The energy stored in the capacitor decreases times. |
3. | The change in energy stored is |
4. | The charge on the capacitor is not conserved. |
Two thin dielectric slabs of dielectric constants and are inserted between plates of a parallel plate capacitor, as shown in the figure. The variation of electric field between the plates with distance as measured from the plate is correctly shown by:
1. | 2. | ||
3. | 4. |
A conducting sphere of the radius is given a charge The electric potential and the electric field at the centre of the sphere respectively are:
1. | zero and | 2. | and zero |
3. | and | 4. | both are zero |
In a region, the potential is represented by where is in volts and are in meters. The electric force experienced by a charge of coulomb situated at a point is:
1.
2.
3.
4.
, and are three points in a uniform electric field. The electric potential is:
1. | maximum at |
2. | maximum at |
3. | and | same at all the three points
4. | maximum at |
An electric dipole of moment is placed in an electric field of intensity The dipole acquires a position such that the axis of the dipole makes an angle with the direction of the field. Assuming that the potential energy of the dipole to be zero when , the torque and the potential energy of the dipole will respectively be:
1.
2.
3.
4.
Four-point charges are placed, one at each corner of the square. The relation between and for which the potential at the center of the square is zero is:
1. | 2. | ||
3. | 4. |
Two metallic spheres of radii and are given charges of and , respectively. If these are connected by a conducting wire, then the final charge on the bigger sphere is:
1.
2.
3.
4.