because north and south are opposite
A suspended magnet comes to rest when the magnetic forces acting on it are balanced by other forces, such as gravitational and frictional forces. When the magnet is freely suspended, it will rotate until its magnetic field aligns with the Earth's magnetic field, reaching a position of equilibrium. Additionally, any oscillations or movements will gradually diminish due to air resistance and internal friction, leading the magnet to settle in its most stable orientation.
No.It doesn't.
Rest:a body is said to be at rest,if it does not change its position with repect to its surroundings.e.g;At rest A pumpkin will remain at rest unless an external force acts upon it, there are no external forces, so it doesn't move Motion:a body is said to be at motion ,if it changes its position with respect to its surroundings.e.g;motion of a pendlum,motion of riders in ferris wheel
No, a stationary magnet will not induce a current in a nearby conductor. Movement or change in magnetic field is required to induce an electric current in a conductor through electromagnetic induction.
When iron and tin pieces are placed near a magnet, the iron will be attracted to the magnet due to its ferromagnetic properties. This means that iron can become magnetized and will move toward the source of the magnetic field. In contrast, tin is not ferromagnetic and will not be affected by the magnet; it will remain in its original position. Therefore, only the iron will exhibit a noticeable reaction to the magnet.
When the magnet is free to rotate and its poles are in a horizontal plane, it comes to rest with its poles pointing roughly north and south.
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A suspended magnet comes to rest when the magnetic forces acting on it are balanced by other forces, such as gravitational and frictional forces. When the magnet is freely suspended, it will rotate until its magnetic field aligns with the Earth's magnetic field, reaching a position of equilibrium. Additionally, any oscillations or movements will gradually diminish due to air resistance and internal friction, leading the magnet to settle in its most stable orientation.
The rest position in a wave is the position where the particles of the medium are when they are not vibrating. It is the equilibrium position that the particles return to when there is no disturbance. In a transverse wave, the rest position is the position of the particles when the wave is not passing through.
Hang the horse shoe magnet from the middle of the U portion in inverted U position and suspend it freely, after some time the south pole of the magnet will be north and nothpole south will be in inverted u position.
The distance from the rest position of a wave to its crest is equal to the amplitude of the wave. Amplitude is the maximum displacement of a wave from its rest position.
it will rest in the north - south direction
There is often a small magnet in the base of a stapler to help hold the staples in place and guide them into position for stapling.
The lowest point below the rest position of a wave is called the trough. The highest point above the rest position is called the crest.
The maximum height reached by a wave from its rest position is called the amplitude. It is the distance from the rest position to the highest point of the wave.
The distance from the rest position to a wave's crest is known as the amplitude. It represents the maximum displacement of a wave from its equilibrium position. This distance is measured vertically from the rest position to the highest point of the wave.