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In a ferrous metal, iron, if the molecules align then magnetism is formed. To show this, if you take a nail that is not magnetic and then hammer it, the molecules start to line up and it becomes magnetized.

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14y ago
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6y ago

The matter that has strong magnetism - called ferromagnetism - has the ability to form magnetic domains. That means that the individual atoms, which individually have a small amount of magnetism, tend to align themselves within small regions (the magnetic domains). If an external magnetic field is applied, the domains themselves align to the magnetic field.

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9y ago

Some elements are magnetic due to their nature and the properties that they posses. The dipole moment is the main determinant to magnetism of an element.

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15y ago

Their electrons are polarized (lacking or have too many). And so when they meet an opposite they move towards it in an attempt to balance out the charge.

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6y ago

Really oversimplifying it, some elements attract electrons because they don't have enough electrons to fill all their quantum energy levels.

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Q: Why do some elements attract electrons?
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Related questions

What elements on the periodic table attract electrons?

Non-metals, especially group 17 and group 16 elements.


Which elements tend to attract electrons to become negative ions?

Nonmetals tend to attract electrons to become negative ions.


What elements typically attract electrons?

+ include the halogens + are non metals


What elements has the greatest ability to attract electrons Li Be Mg or Na?

Among the elements listed, fluorine has the greatest ability to attract electrons due to its high electronegativity. Among the options provided, the element with the greatest ability to attract electrons is Be due to its small atomic size and high effective nuclear charge.


Elements that typically attract electrons are what?

include the halogens are nonmetals


The ability to attract electrons?

The ability to attract electrons is known as electronegativity, a measure of an atom's ability to attract and hold onto electrons in a chemical bond. A higher electronegativity value indicates a stronger pull on electrons, while a lower value indicates a weaker attraction. Electronegativity plays a key role in determining the nature of chemical bonds and the overall reactivity of elements.


What elements bromine barium beryllium or boron has the greatest tendency to attract electrons?

Bromine has the greatest tendency to attract electrons among the elements listed. This is because it is a halogen and located in group 17 of the periodic table, meaning it has a high electron affinity and tends to gain electrons to achieve a stable electron configuration.


What property of nonmetalic elements makes them more likely to gain electrons than lose electrons?

They have a higher electronegativity than metals. Electronegativity is the tendency of an atom or a functional group to attract electrons to itself.


What is eletroegativity?

Electronegativity is a measure of an atom's ability to attract and hold onto electrons. It increases across periods on the periodic table and decreases down groups. Elements with high electronegativity tend to attract electrons strongly in chemical bonds, while those with low electronegativity tend to lose electrons easily.


The number of electrons determines what of an element?

The number of electrons in an element determines its chemical properties and behavior. Specifically, it influences how an element will bond with other elements to form compounds and determines its reactivity.


Why electronegativity has no unit?

Electronegativity is a relative measure of an element's ability to attract electrons within a chemical bond. It does not have units because it is a property that is based on a comparison of elements' abilities to attract electrons, rather than a measured quantity.


Which element consists of atoms that's most strongly attract electrons of other atoms?

Fluorine, as it has the highest electronegativity value of all elements. This means fluorine atoms have a strong ability to attract electrons from other atoms when forming chemical bonds.