2.6
The mass of a single atom is very small, so it is not practical to measure the mass in grams or kilograms. The mass of atoms and molecules are measured in units called Daltons, abbreviated Da, or atomic mass units, abbreviated amu, or sometimes just u.
The mass of an atom in amu is approximately equal to the sum of the number of protons and the number of neutrons; however, most elements have several naturally occurring isotopes. Each of these isotopes has a different number of neutrons and, therefore, a different mass.
For each element, its average mass is calculated by summing the masses of the element’s isotopes, each multiplied by its natural fractional abundance on Earth.
The mass and relative abundance of various isotopes of an element can be determined using mass spectrometry. The isotopes are separated by mass, and the mass spectrum of a sample shows the relative abundance of the isotopes.
These values are used to calculate the average atomic mass that appears on the periodic table.
The mass spectrum of a representative sample of boron shows that 19.9% of this sample is boron-10 with a mass of 10.0129 amu. The rest is boron-11 with a mass of 11.0093 amu.
The mass of boron-10 and boron-11 are each multiplied by their fractional abundance, 19.9 per 100 for boron-10 and 80.1 per 100 (the remainder) for boron-11. These values are then summed to find the average atomic mass of boron.
Atoms — and the protons, neutrons, and electrons that compose them — are extremely small. For example, a carbon atom weighs less than 2 × 10−23 g. Whe…
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