The Law of Magnetic Pole Repulsion: Applications in Electric Motors, Magnetic Levitation Trains, and MRI Machines

what happens when like poles push away from each other

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When like magnetic poles (North poles or South poles) are brought close to each other, they will repel each other because they have the same polarity. This means that the magnetic field lines produced by each pole will interact and push against each other, causing them to separate. If the poles are brought close enough, the force of repulsion will be strong enough to overcome any external forces and the poles will move away from each other.

For example, if two North poles of magnets are brought close to each other, they will push away from each other and try to move as far apart as possible. Similarly, if two South poles of magnets are brought close to each other, they will also push away from each other and try to move as far apart as possible. This behavior is a fundamental property of magnets known as the Law of Magnetic Pole Repulsion.

This phenomenon is the basis for many practical applications, including the operation of electric motors, magnetic levitation trains, and even MRI machines in the medical field.

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