jolie builds a model of a maglev train. she uses disc magnets to levitate the train. a disc magnet has its…

jolie builds a model of a maglev train. she uses disc magnets to levitate the train. a disc magnet has its north and south poles on its faces, as shown. what is the best way to arrange the magnets on the train and on the track so that the model train levitates? flat, so that the north pole of each magnet on the train points up and the north pole of each magnet on the track points up flat, so that the north pole of the magnets on the train point up and the north poles of the magnets on the track point down on edge, so that the north poles of the magnets on the train point to the front and the north poles of the magnets on the track point toward the rear on edge, so that the north pole of each magnet on the train and on the track point toward the rear of the train

jolie builds a model of a maglev train. she uses disc magnets to levitate the train. a disc magnet has its north and south poles on its faces, as shown. what is the best way to arrange the magnets on the train and on the track so that the model train levitates? flat, so that the north pole of each magnet on the train points up and the north pole of each magnet on the track points up flat, so that the north pole of the magnets on the train point up and the north poles of the magnets on the track point down on edge, so that the north poles of the magnets on the train point to the front and the north poles of the magnets on the track point toward the rear on edge, so that the north pole of each magnet on the train and on the track point toward the rear of the train

Answer

Brief Explanations:

Maglev trains levitate due to magnetic - repulsion. Opposite poles attract and like poles repel. For the train to levitate, the magnets on the train and track should have like - poles facing each other. When the magnets are flat and the north poles of the train magnets face up and the north poles of the track magnets face up, they will repel each other, causing levitation.

Answer:

flat, so that the north pole of each magnet on the train points up and the north pole of each magnet on the track points up