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the number of electrons in the outermost electron shell

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Maymie Paucek

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What determines types of chemical reactions that an atom participates in?

the number of electrons in the outermost electron shell


What is the outermost electron of an atom that participates in chemical bonding?

The outermost electron of an atom that participates in chemical bonding is known as a valence electron. Valence electrons are located in the outermost shell of an atom and determine its chemical properties and reactivity. These electrons can be shared, lost, or gained during chemical reactions, forming bonds with other atoms to create molecules. The number of valence electrons influences the type of bonds an atom can form, such as ionic or covalent bonds.


What is an electron that is in the highest energy level of an atom and determines the atom's chemical properties is called?

An electron that is in the highest energy level of an atom and determines the atom's chemical properties is called a valence electron. Valence electrons are involved in the interactions between atoms, such as forming bonds with other atoms in chemical reactions.


Which part of an atom determines how it will react with other atoms?

The outermost electrons, located in the atom's electron cloud, determine how it will react with other atoms. These electrons are involved in chemical reactions as they interact with electrons from other atoms to form chemical bonds.


What is made up of only one kind of atom and cannot be broken down by chemical reactions?

An element is made up of only one kind of atom and cannot be broken down by chemical reactions. Each element is defined by the number of protons in its nucleus, which determines its unique properties.

Related Questions

What determines types of chemical reactions that an atom participates in?

the number of electrons in the outermost electron shell


What determines the type of chemical reactions that atom participate in?

the number of electrons in the outermost electron shell


What energy shell determines the chemical properties of an atom?

The valence shell containing the valence electrons used in chemical reactions.


What is the outermost electron of an atom that participates in chemical bonding?

The outermost electron of an atom that participates in chemical bonding is known as a valence electron. Valence electrons are located in the outermost shell of an atom and determine its chemical properties and reactivity. These electrons can be shared, lost, or gained during chemical reactions, forming bonds with other atoms to create molecules. The number of valence electrons influences the type of bonds an atom can form, such as ionic or covalent bonds.


What is an electron that is in the highest energy level of an atom and determines the atom's chemical properties is called?

An electron that is in the highest energy level of an atom and determines the atom's chemical properties is called a valence electron. Valence electrons are involved in the interactions between atoms, such as forming bonds with other atoms in chemical reactions.


An electron in the outermost energy level of an atom is a?

The outermost electrons are called VALENCE electrons.


What does a valence shell have to do with chemical reactions?

The valance shell is important in chemical reactions, as it is the valance electrons which are gained/lost during reactions. An atoms valance electron configuration is what largely determines its chemical reactivity.


What part of an atom is primarily responsible for chemical reactions?

The electrons in an atom are primarily responsible for chemical reactions.


Which subatomic particle determines the behavior of an element?

The electron shell is the source of an element's chemical properties and the moderator of chemical reactions; the electron shell depends on the protons that constitute the atom


What of an atom's electrons are involved in chemical reactions?

The electrons farthest from the nucleus of the atom


What determines and Atom chemical property?

This is the number of protons.


What particle of an element cannot be created or destroyed?

What remains constant is the total of all types of energy.