Like poles of a magnet, which are either both north or both south, repel each other, while unlike poles, one north and one south, attract each other. To identify the poles, you can bring a known magnet close to the magnet in question; if they repel, they are like poles, and if they attract, they are unlike poles. Additionally, a compass can be used, as the north pole of the compass will point towards a south pole of the magnet and vice versa.
Yes. When unlike poles meet,they attract.When like poles meet, they repel.
no because the north attracts north and the south attracts the south
Two unlike poles refer to the opposite ends of a magnet, specifically the north pole and the south pole. When brought close together, unlike poles attract each other, which is a fundamental principle of magnetism. This attraction occurs because opposite magnetic fields interact, resulting in a force that pulls the two poles together. Conversely, like poles, such as north-north or south-south, repel each other.
The two unlike poles on a magnet are the north pole and the south pole. These poles are where the magnetic field lines converge (north pole) or diverge (south pole). Opposite poles attract each other, while like poles repel each other due to the orientation of the magnetic field lines. This fundamental property of magnets is crucial in understanding magnetic interactions and applications in various fields such as physics, engineering, and technology.
A Magnet attracts or repels other Magnets, depending on their mutual orientation of North and South Poles. When placing like Poles of two Magnets together, the Magnets repel each other,
like poles attract unlike poles repel
Magnets have two poles north and south. Like poles repel and unlike poles attract.
It has 2 Poles the North Pole and the South Pole . Extra Info . : Like Poles repel where as unlike Poles attract .
Yes. When unlike poles meet,they attract.When like poles meet, they repel.
A magnet creates a magnetic field, which is directive with two polar regions (termed north and south). A magnet attracts non-magnetized ferromagnetic materials (iron, steel, nickel) , and each pole attracts oppositely-charged magnets, while repelling like charges and poles.
no because the north attracts north and the south attracts the south
A magnet possess the four properties:-attractive property-directive property-like poles repel and unlike poles attract-poles always exists in pairsattractive property: if you bring a magnet near iron filings, the iron filing will get attracted to the magnet. this is the attractive property.directive property:if a magnet is freely suspended by a thread, it will align itself in the north-south direction. this is called the directive property.like poles repel and unlike poles attract: a bar magnet's north pole is brought near the north pole of another magnet, it is observed that the the two magnets get repelled. if the same north pole is brought near the south pole of another magnet, the two magnets get attracted.poles always exists in pairs: when a magnet is cut into pieces, it will always have two poles, that is , north and south. even the smallest magnets will have this property. it is called the dipole property.
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Like poles repel, opposites attract. So a N pole of one bar magnet will repel the N pole of another bar magnet. And the same applies to two S poles.
Two unlike poles refer to the opposite ends of a magnet, specifically the north pole and the south pole. When brought close together, unlike poles attract each other, which is a fundamental principle of magnetism. This attraction occurs because opposite magnetic fields interact, resulting in a force that pulls the two poles together. Conversely, like poles, such as north-north or south-south, repel each other.
The two unlike poles on a magnet are the north pole and the south pole. These poles are where the magnetic field lines converge (north pole) or diverge (south pole). Opposite poles attract each other, while like poles repel each other due to the orientation of the magnetic field lines. This fundamental property of magnets is crucial in understanding magnetic interactions and applications in various fields such as physics, engineering, and technology.
Like poles repel each other and opposite poles attract each other. The magnetic field lines always form closed loops, flowing from the north pole to the south pole outside the magnet and from the south pole to the north pole inside the magnet.