How do we know for certain that atoms can’t have more than 8 maximum outermost electrons when atoms form chemical bonds? Is there any research being done to see why atoms prefer the octet rule?

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How do we know for certain that atoms can’t have more than 8 maximum outermost electrons when atoms form chemical bonds? Is there any research being done to see why atoms prefer the octet rule?

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15 Answers

Anonymous 0 Comments

When atoms form chemical bonds, they share or exchange electrons to become stable. Atoms are most stable when they have a full outermost shell of electrons. The octet rule says that atoms tend to gain, lose, or share electrons to have 8 electrons in their outermost shell because that’s a very stable configuration.
The octet rule is based on observations of how different elements behave and how their electrons are arranged. However, there are exceptions to this rule, and scientists are still studying why certain atoms can have more than 8 electrons in their outermost shell and still be stable.

Anonymous 0 Comments

When atoms form chemical bonds, they share or exchange electrons to become stable. Atoms are most stable when they have a full outermost shell of electrons. The octet rule says that atoms tend to gain, lose, or share electrons to have 8 electrons in their outermost shell because that’s a very stable configuration.
The octet rule is based on observations of how different elements behave and how their electrons are arranged. However, there are exceptions to this rule, and scientists are still studying why certain atoms can have more than 8 electrons in their outermost shell and still be stable.

Anonymous 0 Comments

They did this research almost a hundred years ago. The s and p electronics are the most active chemically and there are 8 of those in each level. The electron configuration if the nearest noble gas is usually the most stable chemically.

This is especially true of the non-metallic elements in the top-right corner which are most often present in large organic molecules. C,N,O and the halogens. P and S are interesting exceptions! They can have 10 and 12 instead of just 8.

Anonymous 0 Comments

They did this research almost a hundred years ago. The s and p electronics are the most active chemically and there are 8 of those in each level. The electron configuration if the nearest noble gas is usually the most stable chemically.

This is especially true of the non-metallic elements in the top-right corner which are most often present in large organic molecules. C,N,O and the halogens. P and S are interesting exceptions! They can have 10 and 12 instead of just 8.

Anonymous 0 Comments

They did this research almost a hundred years ago. The s and p electronics are the most active chemically and there are 8 of those in each level. The electron configuration if the nearest noble gas is usually the most stable chemically.

This is especially true of the non-metallic elements in the top-right corner which are most often present in large organic molecules. C,N,O and the halogens. P and S are interesting exceptions! They can have 10 and 12 instead of just 8.