An atom of that element has all the properties of that element.
The smallest subdivision that retains all of the properties of a molecular compound is a molecule, and the smallest subdivision that retains all of the properties of a ionic compound is a formula unit.
Yes, electrons are the smallest subatomic particle of an element and they play a key role in determining the element's chemical properties. However, while electrons are essential for defining an element's characteristics, they alone do not fully encapsulate all of an element's properties.
If an element were broken down into its smallest particles, you would get atoms of that element. Each atom is the smallest unit of an element that retains the properties of that element.
The smallest part of an element that retains all its properties is an atom. Each atom is made up of protons, neutrons, and electrons that determine the chemical behavior and physical properties of the element.
The smallest particle of an element that still retains the chemical characteristics of that element is called an atom. Each element is made up of atoms, which are composed of protons, neutrons, and electrons.
If it is an element, then the smallest particle that retains the characteristics of the element is an atom. If it is a diatomic element, then the smallest particle that retains the characteristics of the element is a molecule. If it is a molecular compound, then the smallest particle that retains the characteristics of the compound is a molecule. If it is an ionic compound, the smallest particle that retains characteristics of the compound is a formula unit.
The smallest subdivision that retains all of the properties of a molecular compound is a molecule, and the smallest subdivision that retains all of the properties of a ionic compound is a formula unit.
The smallest identifiable unit of an element that retains the properties of the element is an atom.
The smallest particle that retains the properties of an element is an atom. Quarks and leptons are just a family of elementary particles and do not carry any properties of the element.
smallest particle of an element that retains the properties of that element.
The atom is the smallest particle of an element that retains it's characteristics. Sub-atomic particles such as protons, neutrons and electrons form the atom and it is the amount of each of these sub-atomic particles that make the element that element.
An atom is the smallest particle of an element that retains the properties of that element. Each atom consists of a nucleus containing protons and neutrons, surrounded by electrons that determine the element's chemical behavior.
An atom is the smallest portion of an element that still retains its properties.
An atom of that element.
The smallest particle of matter that retains the properties of the element of which it is a sample.
You mean the smallest particle of an element that still retains that element's properties. It is the atom. Even one atom of, say, carbon is still carbon. Cut it up any further and you no longer have carbon.
Yes, electrons are the smallest subatomic particle of an element and they play a key role in determining the element's chemical properties. However, while electrons are essential for defining an element's characteristics, they alone do not fully encapsulate all of an element's properties.