suspend the magnets from strings in such a way that they only repel each other. (Between two glass plates maybe, so they can't rotate.) measure the angle of the strings.
Knowing the weight of each magnet, the acceleration of gravity, and the cosine of the angle between the strings this should give you enough to calculate the magnitude of the force between the magnets. (Providing you know vector addition of course.)
This has got to do with the amount of Chrome in the alloy used to make the revolver. With a lot of chrome in the alloy, the bonds between chrome and iron would not allow for magnetic interaction. Most stainless steel is magnetic though if one just applies a strong enough magnetic force. regards.
Magnetic freild
Domains inside the magnetic
It rotates the rotor. Torque is produced by the magnetic force on the current induced in the squirrel cage. This magnetic force acts as torque on the rotor as a tangential force that makes it spin.
Magnets make electricity by moving electrons through conductive material. This is accomplished by a variable magnetic field by either rotating a conductive wire in between magnets, or rotating magnets around a conductive wire.
The behavior of two magnets can show the presence of a magenetic for as follows:Unlike poles will attractLike poles will repel
The behavior of two magnets can show the presence of a magenetic for as follows:Unlike poles will attractLike poles will repel
If they pull towards, or away from, one another, it means there is a force.
The behavior of two magnets can show the presence of a magenetic for as follows:Unlike poles will attractLike poles will repel
The behavior of two magnets can show the presence of a magenetic for as follows:Unlike poles will attractLike poles will repel
Factors that affect the strength of magnetic force include the distance between the magnets, the material the magnets are made of, the size and shape of the magnets, and the orientation of the magnets relative to each other. Additionally, the presence of any magnetic shielding or intervening materials can also influence the strength of the magnetic force.
Iron, nickel, and cobalt are examples of substances that are attracted to magnetic force. These materials contain magnetic domains that align in the presence of a magnetic field, causing them to be attracted to magnets.
Magnetic force is the force exerted between magnets or between a magnet and a magnetic material. It is a fundamental force that attracts or repels objects based on the alignment of their magnetic poles. This force is responsible for the behavior of magnets and plays a crucial role in various applications such as electric motors and magnetic resonance imaging (MRI).
repulsion or attraction between two magnets which leads to calculation of a positive work in the interaction shows the presence of a new force named the magnetic force.
Magnets have magnetic force in them, obviously, to attract or repel magnetic materials. The materials could not be attracted without the magnetic force because the magnet forces the magnetic material towards it.
The force between two magnets is primarily dependent on the strength of the magnets' magnetic fields, the distance between the magnets, and the orientation of the magnets. In general, the force increases with stronger magnetic fields and decreases with greater distance. The force is also influenced by the alignment of the magnetic poles.
The distance between the magnets: The force of magnets decreases as the distance between them increases. The size or strength of the magnets: Stronger magnets will have a larger magnetic force between them. The orientation of the magnets: The force between magnets is strongest when their poles are aligned and weakest when they are opposite. The magnetic properties of the materials: Different materials have varying magnetic permeabilities, affecting the strength of the magnetic force.