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The diagram below shows a wire carrying a current between the poles of a large horseshoe magnet.



In which direction does the magnetic force act on the wire?

A
towards 1

B
towards 2

C
towards 3

D
towards 4

The Diagram Below Shows A Wire Carrying A Current Between The Poles Of A Large Horseshoe Magnet In Which Direction Does The Magnetic Force Act On The Wire A Tow class=

Sagot :

The magnetic force is acting towards 2.

It is given that the diagram below shows a wire carrying a current between the poles of a large horseshoe magnet.

We need to determine in which direction does the magnetic force act on the wire.

We will use Fleming's left hand rule here.

It states that

If we arrange our thumb, forefinger and middle finger of the left-hand perpendicular to each other, then the thumb points towards the direction of the force experienced by the conductor, the forefinger points towards the direction of the magnetic field and the middle finger points.

According to this, the magnetic force is acting towards 2.

Option B is correct.

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The magnetic force is acting towards 2 direction. the correct answer is option(b).

An electric charge, an electric current, and magnetic materials are all affected magnetically by a magnetic field, which is a vector field. A force perpendicular to the magnetic field and its own velocity acts on a moving charge in a magnetic field. Given that the illustration below depicts a wire conducting a current between the poles of a sizable horseshoe magnet, it is assumed. We must ascertain the direction in which the magnetic force acts on the wire.

Here, the Fleming left-hand rule will be applied. The thumb, forefinger, and middle finger of the left hand are arranged perpendicular to one another, with the thumb pointing in the direction of the force experienced by the conductor and the forefinger and middle finger pointing in the direction of the magnetic field. This indicates that the magnetic force is pulling in the direction of 2.

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