When two like poles of a magnet are placed one on top of the other, they repel each other due to the magnetic force between them. This repulsion creates a force that can counteract gravity, allowing the top magnet to "float" above the bottom one. The stability of this arrangement depends on factors like the strength of the magnets and their alignment. In essence, the floating occurs because the repulsive magnetic force exceeds the gravitational pull on the upper magnet.
When like poles of magnets are placed near each other, they repel each other. This occurs because both poles have the same magnetic charge—either north or north, or south or south—causing a force that pushes them apart. This phenomenon is a fundamental principle of magnetism, illustrating that opposite poles attract while like poles repel.
they create an electrical current
Yes, Because they repel each other.
Like poles of a magnet are most likely to repel each other. This means that two north poles or two south poles placed near each other will push away from one another. This behavior contrasts with opposite poles, which attract each other. The interaction between magnetic poles is a fundamental principle of magnetism.
Two magnetic south poles repel each other.
Magnetic levitation.
Magnetic levitation.
Magnetic levitation.
When two like poles are placed one on top of the other, they repel each other due to their magnetic fields. This repulsion force causes the magnets to float or levitate above each other without direct contact. This effect is known as magnetic levitation.
Wisconsin
When like poles of magnets are placed near each other, they repel each other. This occurs because both poles have the same magnetic charge—either north or north, or south or south—causing a force that pushes them apart. This phenomenon is a fundamental principle of magnetism, illustrating that opposite poles attract while like poles repel.
they create an electrical current
Yes, Because they repel each other.
When opposite poles of a magnet are placed near each other, they attract each other. This attraction is due to the alignment of magnetic field lines between the two poles. The force of attraction between opposite poles is stronger than the force of repulsion between like poles.
If you placed two magnets with their north poles end to end they would repel each other.
Like poles of a magnet are most likely to repel each other. This means that two north poles or two south poles placed near each other will push away from one another. This behavior contrasts with opposite poles, which attract each other. The interaction between magnetic poles is a fundamental principle of magnetism.
Two magnetic south poles repel each other.