Advertisements
Advertisements
प्रश्न
Use this law to find magnetic field due to straight infinite current carrying wire.
उत्तर
Magnetic field due to straight infinite current carrying wire:
The figure below shows a straight infinite current carrying wire around which a circular loop of radius r is shown
The field lines are circular, and hence, the field B at any point of the circular loop is directed along the tangent to the circle at that point. The magnitude of field B is the same at every point of the circular loop.
Therefore, we get
∫B.dl=∫Bdl cosθ = ∫Bdl cos0 = B∫dl =B(2πr)
Now, from Ampere’s circuital law, the above equation is
`B(2pir)=mu_0I`
`:.B=(mu_0I)/(2pir)`
APPEARS IN
संबंधित प्रश्न
The electric current flowing in a wire in the direction from B to A is decreasing. Find out the direction of the induced current in the metallic loop kept above the wire as shown.
Explain the term hysteresis
A charged particle is moved along a magnetic field line. The magnetic force on the particle is
Write the expression for the Lorentz force F in vector form.
According to the right-hand rule, the direction of magnetic induction if the current is directed in an anticlockwise direction is ______
A conductor has three segments; two straights of length L and a semicircular with radius R. It carries a current I What is the magnetic field B at point P?
The magnetic moment of a current I carrying circular coil of radius r and number of turns N varies as ______.
A unit vector is represented as `(0.8hat"i" + "b"hat"j" + 0.4hat"k")`. Hence the value of 'b' must be ______.
State dimensions of magnetic field.
A circular coil of wire is made up of 200 turns, each of radius 10 cm. If a current of 0.5A passes through it, what will be the Magnetic field at the centre of the coil?