Because it's not a metal and is a porous material.
Hemoglobin contains iron, which is attracted to magnetic fields. When exposed to a strong magnetic field, the iron in hemoglobin aligns with the field, causing it to be attracted towards the magnet.
You can use a magnet to separate iron filings from wood shavings. Simply pass the magnet over the mixture and the iron filings will be attracted to the magnet, leaving the wood shavings behind. You can then easily separate the two components.
Because iron is a ferromagnetic metal.
An object made of iron, nickel, or cobalt will be strongly attracted to a magnet due to their magnetic properties. Other materials like wood, plastic, or glass will not be strongly attracted to a magnet.
South Pole of another Magnet or towards the South Pole of the Earth
A magnet won't pick up a penny because pennies are made of non-magnetic materials like copper and zinc, which are not attracted to magnets. Similarly, a magnet won't pick up a piece of wood because wood is also non-magnetic and does not have magnetic properties to be attracted to the magnet.
Pepper is not attracted by a magnet. Pepper is a non-magnetic substance and does not contain any magnetic properties that would cause it to be drawn towards a magnet.
Certain materials are attracted to magnets because they have unpaired electrons that align in the presence of a magnetic field, creating a magnetic force that pulls them towards the magnet.
No, copper is not attracted to a magnet.
Well, darling, a magnet can only stick to materials that are attracted to it, like iron or steel. So, if you're trying to get cozy with some wood or plastic, you're out of luck. Stick to what sticks back, honey.
You can separate iron filings and wood chips using a magnet. The iron filings will be attracted to the magnet, allowing you to carefully separate them from the wood chips. Alternatively, you can use a sieve to sieve out the larger wood chips from the smaller iron filings.
A nail can be attracted to a magnet because the nail's iron material contains domains of aligned magnetic moments that can interact with the magnetic field of the magnet, causing it to be drawn towards the magnet.