Mass of the atoms
The magnetic force of a magnet is the force that a magnet exerts on another magnet or a magnetic material. It is responsible for attracting or repelling objects with magnetic properties. The strength of the magnetic force depends on the material and shape of the magnet.
Silver is not magnetic. It is a non-magnetic material, which means it does not have magnetic properties and cannot be attracted by a magnet.
When a magnetic material is magnetized, its magnetic domains align in a specific direction, creating a net magnetic field within the material. This alignment results in the material becoming capable of attracting or repelling other magnetic materials.
A magnet.
No, two magnets are not twice as strong as one. The strength of magnets depends on their magnetic field intensity, which is not simply additive when combining multiple magnets. Magnetic strength is influenced by factors such as the magnetic material, size, shape, and orientation of the magnets.
Magnetism depends on the arrangement of atoms within a material. When atoms are aligned in the same direction, they create a magnetic field. The alignment of these magnetic moments determines the material's magnetic properties.
An object's ability to generate a magnetic field depends on the alignment of its internal magnetic domains or the flow of electric current within it. This can be influenced by factors such as the material it is made of and whether it is exposed to an external magnetic field.
The magnetic properties of a material depend on its atomic structure, particularly the alignment and movement of its electrons. Materials with unpaired electrons and aligned magnetic moments exhibit magnetic properties. Temperature, external magnetic field, and crystalline structure also play a role in determining the magnetic behavior of a material.
The magnetic force of a magnet is the force that a magnet exerts on another magnet or a magnetic material. It is responsible for attracting or repelling objects with magnetic properties. The strength of the magnetic force depends on the material and shape of the magnet.
it generally depends on the soil content~if it is rich in iron or some other magnetic metals it will magnetize but if it don't it won't..soil is non-magnetic but iron filings in it are magnetic
Water is magnetic material but dia magnetic
Magnetic hysteresis is the phenomenon where the magnetization of a material depends not only on the current magnetic field, but also its history. When the magnetic field is applied and then removed, the material retains some magnetization, showing a lag or "memory" in its response to changing magnetic fields. This results in the characteristic hysteresis loop observed in magnetic materials.
It depends entirely on the material of which a spring is made. Some stainless steels are nonmagnetic. If springs are made from any of these steels then they will not be magnetic.
A magnet can be made in the shape of a ring but the poles run from the front to the back of the ring not around it. However it should be kept in mind that rings such that are worn are generally not made of material that is magnetic.
It depends on the material the pot is made of. If the pot is made of stainless steel or cast iron, it is likely to be magnetic. However, if the pot is made of aluminum or copper, it will not be magnetic.
temporarily magnetic
Silver is not magnetic. It is a non-magnetic material, which means it does not have magnetic properties and cannot be attracted by a magnet.