Magnetic materials are magnetized by exposing them to a magnetic field, such as from a magnet or an electromagnet. This causes the magnetic domains within the material to align, creating a net magnetic field. The material retains this magnetic field even after the external field is removed.
The strong magnetised nail will pick up more paper clips than the weak magnetised nail.That is because the strong magnetised nail is getting more strength and that means that the weak magnetised nail is getting less strength.in a steel nail there are these things called domains, in a weakly magnetised nail some of them will be pointing north, south, east and west, but however in a strongly magnetised nail all the domains will point to north.
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.
No, a pen knife is typically not magnetic as it is usually made of non-magnetic materials such as stainless steel or aluminum. However, some pen knives may contain small magnetic components in their construction if they have additional functionalities like a magnetic closure or attachment.
Yes, iron can be magnetized. When exposed to a magnetic field, the magnetic domains in iron align to create a magnetic field of its own. This causes iron to exhibit magnetic properties.
Magnetized units forming clusters are called magnetic domains. In a magnetic material, these domains align to create a net magnetic moment. They can be manipulated by applying an external magnetic field.
ferro magnetic substances can be magnetised. but it is not necessary that all the Ferro magnetic substances can be permanently magnetised. it depends on the alignment of domains in the substance.for example wrought iron can be magnetised permanently but soft iron can only be magnetised temporarily(Electro Magnets).
rub a magnet on it in the same way but the material has to be magnetised :)
The strong magnetised nail will pick up more paper clips than the weak magnetised nail.That is because the strong magnetised nail is getting more strength and that means that the weak magnetised nail is getting less strength.in a steel nail there are these things called domains, in a weakly magnetised nail some of them will be pointing north, south, east and west, but however in a strongly magnetised nail all the domains will point to north.
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.
No. Mercury is not a magnetic substance nor can it be magnetised. Iron, Cobalt and Nickel are the only ones.
Only if the steel bolt has been magnetised, or is the core of an electromagnet.
Diamagnetic substances are not magnetised. Example: water is a diamagnetic substance, so it cannot be magnetised by any means.
Magnets are made from magnetic materials. These are metals that can be magnetised or will be attracted to a magnet. Most materials are not magnetic, but iron, cobalt and nickelare magnetic. Steel is mostly iron, so steel is magnetic too.
Steel nails or screws can be magnetized and are commonly used to stick wood together by creating a magnetic bond with other metal surfaces or materials.
No, a pen knife is typically not magnetic as it is usually made of non-magnetic materials such as stainless steel or aluminum. However, some pen knives may contain small magnetic components in their construction if they have additional functionalities like a magnetic closure or attachment.
Yes, iron can be magnetized. When exposed to a magnetic field, the magnetic domains in iron align to create a magnetic field of its own. This causes iron to exhibit magnetic properties.
A magnetic compass acts in relation to the Earth by aligning a magnetised needle with the lines of the Earth's magnetic field; thus resulting in a needle which points to magnetic North.