We get the number of neutrons.
Atomic number is the number of protons, and Atomic Mass is protons plus neutrons.
By subtracting the mass number and the atomic number, the number of neutrons can be calculated.
Yes, the number of neutrons in the nucleus can be calculated by subtracting the atomic number from the mass number. The mass number represents the total number of protons and neutrons in the nucleus, so by subtracting the atomic number (number of protons), you can determine the number of neutrons.
The atomic mass subtracting the number of protons is equal to the number of neutrons in an atom. Neutrons help stabilize the nucleus and contribute to the overall mass of the atom without affecting its chemical properties.
atomic mass number - protons = number or neutrons
To find the number of neutrons in an atom, you would subtract the atomic number (number of protons) from the atomic mass (sum of protons and neutrons). The difference between the atomic mass and the atomic number gives you the number of neutrons in the atom.
The number of neutrons in the nucleus of an atom can be calculated by subtracting the number of protons (atomic number) from the atomic mass of the atom. Atomic mass - Atomic number = Number of neutrons.
By subtracting the atomic mass and atomic number
By subtracting the mass number and the atomic number, the number of neutrons can be calculated.
Yes, the number of neutrons in the nucleus can be calculated by subtracting the atomic number from the mass number. The mass number represents the total number of protons and neutrons in the nucleus, so by subtracting the atomic number (number of protons), you can determine the number of neutrons.
You get the number of neutrons in the atom. The mass number represents the total number of protons and neutrons in the nucleus, while the atomic number represents the number of protons. Subtracting the atomic number from the mass number gives you the number of neutrons because the difference accounts for the protons.
An atom's number of neutrons can be calculated by subtracting the atomic number (which represents the number of protons) from the atomic mass number. For sodium (Na) with an atomic number of 11, the atomic mass number is approximately 22. By subtracting, we find that there are approximately 11 neutrons in a sodium atom with an atomic mass of 22.
The atomic mass subtracting the number of protons is equal to the number of neutrons in an atom. Neutrons help stabilize the nucleus and contribute to the overall mass of the atom without affecting its chemical properties.
The number of neutrons in an atom is easily calculated by taking the mass number and subtracting the atomic number. Take for example, Uranium: the mass number on the periodic table is 238, while the atomic number is 92. Take the difference of 238 and 92 and that will be equal to the number of neutrons. 238-92=146
The formula for finding the amount of neutrons in an element is: Number of neutrons = Atomic mass number - Atomic number. The atomic mass number represents the sum of protons and neutrons in the nucleus of an atom, while the atomic number represents the number of protons. Subtracting the atomic number from the atomic mass number gives you the number of neutrons.
atomic mass number - protons = number or neutrons
Tungsten-187 has 113 neutrons. Work this out by subtracting the atomic number of 74 (which is the number of protons) from the mass number 187.
Atomic mass is the number of protons in an atom mass number is the number of protons plus neutrons in an atom the number of neutrons would equal the mass number minus the atomic number.