The isotopes of nickel share the same number of protons (28) but differ in the number of neutrons in their nuclei, resulting in different mass numbers. Each isotope of nickel has a different abundance in nature, with nickel-58 being the most common.
Isotopes of an element have the same number of protons in their nuclei (same atomic number) but different numbers of neutrons, resulting in different mass numbers. This difference in neutron content gives each isotope unique physical properties such as stability, radioactivity, and atomic mass.
Isotopes. They differ in the number of neutrons in the nucleus.
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All neutral atoms of an element, including any of its isotopes, always do have the same number of electrons. The existence of isotopes has nothing to do with the number of electrons in an atom. Instead, the number of neutrons varies between isotopes of the same element. The number of electrons varies from that of a neutral atom only if an ion of the element is formed.
Isotopes of an element has different number of neutrons.
The isotopes of nickel share the same number of protons (28) but differ in the number of neutrons in their nuclei, resulting in different mass numbers. Each isotope of nickel has a different abundance in nature, with nickel-58 being the most common.
Each isotope of the same element has a specific mass number, which is the sum of the protons and neutrons in the nucleus.
A natural chemical element may be monoisotopic or has isotopes. Isotopes are atoms but they differ from other isotopes by the number of neutrons. This involve a different atomic mass and different physical properties or sometimes (for light isotopes) different chemical properties. Also, all chemical elements have radioactive, artificial isotopes.
Isotopes of an element have the same number of protons in their nuclei (same atomic number) but different numbers of neutrons, resulting in different mass numbers. This difference in neutron content gives each isotope unique physical properties such as stability, radioactivity, and atomic mass.
mass number
No. The only difference between 2 isotopes of the same element is the number of neutrons.
The main difference between isotopes of the same element is the number of neutrons in the nucleus. Isotopes have the same number of protons and electrons but different numbers of neutrons, which affects their atomic mass.
The same numbers of protons and of electrons; the difference between isotopes is in the number of neutrons.
neutrons
scientists Can tell the difference between two isotopes of the same element because, isotopes of the same elements always have the same number of protons.
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