Pure iron filings will be attracted to a magnet; but pieces of iron carbonate will not.
If you bring a magnet close to iron pieces, you will observe that the iron pieces will be pulled towards the magnet. This attraction occurs because iron is a ferromagnetic material, meaning it can be magnetized and is attracted to magnetic fields.
One way to separate iron filings from small pieces of lead is by using a magnet. The iron filings will be attracted to the magnet and can be separated from the lead. Simply move the magnet around the mixture to pick up the iron filings.
The magnet will attract the iron, but will not attract the sulphur.
it attracts
Pure iron filings will be attracted to a magnet; but pieces of iron carbonate will not.
If you bring a magnet close to iron pieces, you will observe that the iron pieces will be pulled towards the magnet. This attraction occurs because iron is a ferromagnetic material, meaning it can be magnetized and is attracted to magnetic fields.
One way to separate iron filings from small pieces of lead is by using a magnet. The iron filings will be attracted to the magnet and can be separated from the lead. Simply move the magnet around the mixture to pick up the iron filings.
A material that attracts small pieces of iron is called a magnet. Magnets have magnetic properties that allow them to attract iron and other magnetic materials.
The magnet will attract the iron, but will not attract the sulphur.
it attracts
You can use iron filings placed on a piece of paper above the magnet to visualize the magnetic field lines. The iron filings will align along the magnetic field lines, making them visible. Alternatively, a magnetic viewing film can also be used to show the magnetic field of a magnet.
When an iron bar is placed near a magnet, the magnetic field of the magnet aligns the magnetic domains within the iron bar. This alignment increases the overall magnetic field strength of the iron bar, effectively inducing magnetism in the bar.
It will become an electro-magnet which is an temporary magnet. it is because of the induction property, the magnetic effect gets transfered to the Scale. (it can be any piece of Iron)
If you hold the end of one (A) to the center of the other (B), one of two things will happen. Either A will attract B, in which case A is the magnet, or it won't, which makes B the magnet. The secret lies in the fact that a magnet is just as attracted to the center of an iron piece, but a piece of unmagnetized iron will have no attraction to the center of a magnet-- they are magnetic off the ends, and the center is neutral.
Iron filings are small shavings or particles of iron that are often used in experiments to visualize magnetic fields. They align themselves along the magnetic field lines when a magnet is placed near them, making the magnetic field visible.
When a bar magnet is placed under a sheet of paper with iron filings on top, the iron filings align along the magnetic field lines of the magnet, showing the direction and strength of the magnetic field.