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because they connect to the sun as a atom and olso they both use energy from each other

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9y ago

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What is the atomic mass of magnets?

Magnets can be made from many different metals so there is no specific atomic mass.


What force of two similar ends of magnets produce?

Magnets always produce an electromagnetic force- between the similar ends of magnets it is electromagnetic repulsion.


The atomic number of potassium is?

Protons that are contained within any and all Atomic [Elemental] Nucleus / Nucleii.


What force does two similar ends of magnets produce?

Magnets always produce an electromagnetic force- between the similar ends of magnets it is electromagnetic repulsion.


How can you break atoms?

The same way you break anything. By applying enough energy. But atoms are difficult to break down (or rather, atomic nucleii are). To smash atomic nucleii, you need to bombard them with high energy sub-atomic particles, like neutrons.


What does there have to be an alignment of for temporary and permanent magnets to be made?

Their atomic spins have to be aligned.


Is quartz attracted to magnets?

No, quartz is not attracted to magnets because it is not a magnetic mineral. The magnetic properties of a material are determined by its atomic structure, and quartz does not have the necessary structure to be attracted to magnets.


Is sulfur attracted to magnets?

No, sulfur is not attracted to magnets because it is not a ferromagnetic material. Ferromagnetic materials, like iron, nickel, and cobalt, are attracted to magnets due to their unique atomic structure that allows them to align with magnetic fields.


How are earth and bar magnets similar?

They are both magnets, one small, one huge, and both with north and south poles.


How is bacteria prokaryotic?

They do not have nucleii. So they are prokaryotic.


How does the atomic mass relate to the atomic number?

These values are similar.


What is it in magnets that causes it to attract metal?

Magnets can retain a permanent magnetic field. All atoms have a magnetic field which are randomly arranged in the object. Magnets and ferrous metals can retain or temporarily align the atomic fields, thus they are magnetic.