The electric charge in uniform motion produces :
1. | An electric field only |
2. | A magnetic field only |
3. | Both electric and magnetic field |
4. | Neither electric nor magnetic field |
An infinitely long straight conductor is bent into the shape as shown in the figure.
It carries a current of amperes and the radius of the circular loop is metres. What will be the magnetic induction at its centre?
1.
2.
3. zero
4. Infinite
A current ampere flows in a circular arc of wire whose radius is which subtend an angle radian at its centre. The magnetic induction at the centre is:
1.
2.
3.
4.
A straight section PQ of a circuit lies along the X-axis from x= to x= and carries a steady current i. The magnetic field due to the section PQ at a point X = + a will be:
1. Proportional to a 2. Proportional to
3. Proportional to 4. Zero
1. | Tesla |
2. | Tesla |
3. | Tesla |
4. | Tesla |
1. | At a distance from any of the wires in any plane. |
2. | At a distance from any of the wires in the horizontal plane. |
3. | Anywhere on the circumference of a vertical circle of radius and centre halfway between the wires. |
4. | At points halfway between the wires in the horizontal plane. |
A circular coil of radius R carries an electric current. The magnetic field due to the coil at a point on the axis of the coil located at a distance r from the centre of the coil, such that r >> R, varies as
1.
2.
3.
4.
The magnetic induction due to an infinitely long straight wire carrying a current at a distance from the wire is given by:
1.
2.
3.
4.
The magnetic induction at the centre O in the figure shown is:
1. 2.
3. 4.
In the figure shown, the magnetic induction at the centre of the arc due to the current in portion AB will be
1. 3.
2. 4. Zero