You need to do the experiment.
If the magnet is strong enough, metal (steel, iron) will jump to the magnet (or pull the magnet towards it).
The force is called magnetism. Magnets have an invisible magnetic field that exerts a force on objects made of certain materials, such as iron, that are within the field. This force can attract or repel the objects without direct contact.
When two magnets are placed together, they are no longer able to concentrate their magnetic field on a single paper clip, which reduces their overall effectiveness in picking up paper clips compared to a single magnet. The magnetic field is weakened when two magnets are combined, causing a decrease in the attraction force between the magnets and the paper clips.
The force acting is called magnetism. When a paper clip is attracted to a magnet, it is due to the magnetic field produced by the magnet interacting with the magnetic properties of the paper clip, causing them to be pulled towards each other.
The force of attraction between two magnets decreases with distance. At a distance of 6 inches, the closer magnet has a stronger force attracting the paper clip. At a distance of 12 inches, the farther magnet's weaker force is compensated by the extra time it has to act. Thus, the paper clips reach both magnets at the same time.
The main forces acting on a magnet are magnetic forces. These forces can attract or repel other magnets or magnetic materials. Additionally, when a magnet moves in a magnetic field, it experiences a force known as the Lorentz force.
Yes, the attractive force of a magnet is greatest at its poles because this is where the magnetic field is strongest. The strength of the magnetic force decreases as you move away from the poles towards the center of the magnet.
by keeping another magnet or attractive force
Yes.
The force is called magnetism. Magnets have an invisible magnetic field that exerts a force on objects made of certain materials, such as iron, that are within the field. This force can attract or repel the objects without direct contact.
you can hang as many paper clips as you want until the weight of the paper clips becomes more than the pulling force of the magnet
The attractive property of a magnet is its ability to attract materials containing iron, nickel, or cobalt due to its magnetic field. This property is a result of the alignment of magnetic domains within the magnet, creating a force of attraction with suitable materials.
A magnet can exert a force on a non-magnetic object through magnetic induction. When a magnet is brought near a non-magnetic object, the object can become temporarily magnetized and experience an attractive or repulsive force depending on the orientation of the object and the magnet.
When two magnets are placed together, they are no longer able to concentrate their magnetic field on a single paper clip, which reduces their overall effectiveness in picking up paper clips compared to a single magnet. The magnetic field is weakened when two magnets are combined, causing a decrease in the attraction force between the magnets and the paper clips.
The force acting is called magnetism. When a paper clip is attracted to a magnet, it is due to the magnetic field produced by the magnet interacting with the magnetic properties of the paper clip, causing them to be pulled towards each other.
The region surrounding a magnet where its magnetic force can affect other objects is called the magnetic field. This field extends around the magnet in three dimensions and is responsible for the attractive or repulsive forces experienced by magnetic materials within its vicinity.
depends on whos punchin
the name of the force is upthrst and t is greater than the force that the boat excert to/on /in the water