The lines of force are closest together at the poles of a bar magnet. As they approach the poles, the magnetic field becomes more concentrated and the lines of force crowd together, displaying greater density.
The magnetic field lines are closest together at the poles of a magnet. This is where the magnetic field is strongest and the lines are most concentrated.
Magnetic field lines are closest together at the poles of a magnet, where the magnetic field is strongest. This is where the magnetic force is most concentrated.
A magnet with many lines of force refers to a strong magnetic field that is densely packed with magnetic field lines. These field lines represent the pathways along which the magnetic force acts, flowing from the magnet's north pole to its south pole. The density of these lines of force indicates the strength of the magnet's magnetic field.
The magnetic force is strongest at the poles of a magnet, where the magnetic field lines are most concentrated and closer together.
The magnetic force of a magnet is strongest at its poles. This is because the field lines of the magnetic field are most concentrated at the poles where they enter and leave the magnet. At the poles the magnetic field is strongest and the force is the greatest. The north pole is where the magnetic field lines enter the magnet. The south pole is where the magnetic field lines leave the magnet. The magnetic field lines are most concentrated at the poles. The magnetic force is greatest at the poles.
The magnetic field lines are closest together at the poles of a magnet. This is where the magnetic field is strongest and the lines are most concentrated.
Magnetic field lines are closest together at the poles of a magnet, where the magnetic field is strongest. This is where the magnetic force is most concentrated.
A magnet with many lines of force refers to a strong magnetic field that is densely packed with magnetic field lines. These field lines represent the pathways along which the magnetic force acts, flowing from the magnet's north pole to its south pole. The density of these lines of force indicates the strength of the magnet's magnetic field.
The closer the lines of force are together, the stronger the magnetic field it represents.
The magnetic force is strongest at the poles of a magnet, where the magnetic field lines are most concentrated and closer together.
the magnet field is the strongest well the summer solstic when the suns gravitational pull is the strongest
The magnetic field of a magnet is strongest at the poles, where the magnetic field lines are closest together and most concentrated.
the imaginary lines around the magnet is a magnitic field and strong
The lines that map out the magnetic field around a magnet are called magnetic field lines. These lines indicate the direction of the magnetic field and its strength at different points around the magnet. Magnetic field lines are closest together where the magnetic field is strongest and they form closed loops that do not intersect.
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The magnetic force of a magnet is strongest at its poles. This is because the field lines of the magnetic field are most concentrated at the poles where they enter and leave the magnet. At the poles the magnetic field is strongest and the force is the greatest. The north pole is where the magnetic field lines enter the magnet. The south pole is where the magnetic field lines leave the magnet. The magnetic field lines are most concentrated at the poles. The magnetic force is greatest at the poles.
It depends on the strength of the magnet.