atomic number
= number of electrons
= number of protons and neutrons (electrons don't add nearly anything to mass so they're not counted.
ps: number of electrons = number of protons in a regular atom
We can find Atomic Mass and mass number in chemical elements. Atomic mass is about weight of the atom. Mass number is about total of neutrons and protons.
isobars are elements with same mass numbers (Atomic Mass) and different atomic number (number of proton or electron)
We can find Atomic Mass and mass number in chemical elements. Atomic mass is about weight of the atom. Mass number is about total of neutrons and protons.
It is equal to the difference between atomic number and Atomic Mass number. A+
The important thing is the number of positrons in the nucleus - this is the atomic number.
The important thing is the number of positrons in the nucleus - this is the atomic number.
The important thing is the number of positrons in the nucleus - this is the atomic number.
Elements differ in their atomic structure, specifically in the number of protons in their nucleus. This difference is what determines the unique properties and behavior of each element. Additionally, elements have distinct atomic numbers, which is a key factor that sets them apart from one another.
The difference in atomic number between adjacent elements is always one (1).
The biggest jump in atomic weights between consecutive elements on the periodic table occurs between uranium (atomic number 92) and neptunium (atomic number 93). Uranium has an atomic weight of approximately 238.03, while neptunium has an atomic weight of approximately 237.05, resulting in a difference of almost 1 atomic mass unit.
Different atomic numbers represent different elements.
The main difference between Boron and Carbon is their atomic number and chemical properties. Boron has an atomic number of 5 and is a metalloid with a variety of oxidation states, while Carbon has an atomic number of 6 and is a nonmetal that forms covalent bonds with other elements.