Average Atomic Mass Calculator

Enter each isotope's mass and percent abundance to calculate the weighted average atomic mass and check that the abundances total 100%.

Isotope entries
Isotope mass (amu)Natural abundance (%)
Advanced options
Average atomic mass

This is the weighted average. Isotopes with larger abundances have more influence on the answer.

Entered abundance total

A complete isotope set totals 100%.

Isotopes included

This counts rows that have both a mass and an abundance.

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How to use our Average Atomic Mass Calculator

  1. Enter the isotope mass in amu (u) and its matching percent abundance in the same row.
  2. Add a row for each additional isotope in the problem, and remove any row that you do not use.
  3. Choose the number of result decimal places in Advanced options if your assignment gives a rounding instruction.
  4. Click Calculate, then check that the entered abundance total is 100% and that the isotope count matches your problem before using the average atomic mass.
Example inputs for Average Atomic Mass Calculator
Example inputs for Average Atomic Mass Calculator

Definitions

Isotope: A version of an element with the same number of protons but a different number of neutrons.

Isotope mass (amu or u): The mass of one isotope. Amu and u are labels for the atomic-mass unit used in this calculator.

Percent abundance: The percent of atoms in a sample that are one particular isotope.

Fractional abundance: Percent abundance written as a decimal for multiplication. For example, 75.78% is 0.7578.

Weighted average: An average where an isotope with a larger abundance has a larger effect on the final value.


Weighted Average ExampleEach isotope mass is multiplied by its fractional abundance before the contributions are added. A 0% isotope is included but contributes 0 amu to the average.Weighted Average ExampleEach isotope mass is multiplied by its fractional abundance before the contributions are added.10 amu at 100%10 amu20 amu at 0%0 amuIsotope contribution
Weighted Average Example
A 0% isotope is included but contributes 0 amu to the average.

Common mistakes and quick fixes

Mistake: Entering a whole-number isotope label, such as 35, instead of the isotope mass supplied in amu.
Fix: Copy the precise mass from the problem, such as 34.96885 amu if that is the value given.

Mistake: Entering a decimal fraction such as 0.7578 in a field labeled percent.
Fix: Convert it to percent first and enter 75.78.

Mistake: Using 75.78 directly as a weight when doing the work by hand.
Fix: Divide the percent by 100 first, so 75.78% becomes 0.7578. The calculator does this conversion for you.

Mistake: Leaving out an isotope or mistyping an abundance.
Fix: Check the entered abundance total. It must equal 100% before the calculator reports an average.

Mistake: Adding isotope masses and dividing by the number of isotopes.
Fix: Use a weighted average: multiply each mass by its own abundance fraction, then add the contributions.


Limitations & Key Assumptions / Boundary Conditions

  • Enter every isotope included in the problem or sample. The abundance values must total 100%.
  • The result is only as precise as the masses and abundances entered. Rounded source values can change the final displayed digits.
  • A zero-percent isotope is a valid complete row and is counted, but it does not change the weighted average.
  • This calculator calculates a forward weighted average only. It does not solve for a missing isotope mass or missing abundance.
  • Decimal-place selection controls display rounding only. Follow any significant-figure instruction from your assignment separately.

Methodology

Calculation

The calculator changes each percent abundance into a decimal fraction by multiplying by 0.01. It then multiplies each isotope mass by that isotope's fraction and adds the contributions. This is the weighted-average method used for isotope-abundance exercises. [1]

fractional abundance = percent abundance × 0.01

average atomic mass = sum of (isotope mass in amu × percent abundance × 0.01)

Worked example

For two isotopes with masses of 10 amu and 20 amu, and abundances of 100% and 0%, the first contribution is 10 × 1.00 = 10 amu. The second is 20 × 0.00 = 0 amu, so the average atomic mass is 10 amu.

(10 × 100 × 0.01) + (20 × 0 × 0.01) = 10 amu

Calculation checks

The calculator requires a mass and abundance in every used row, a mass greater than 0 amu, and an abundance from 0% through 100%. It adds the entered abundances first and stops unless they total 100%, apart from a tiny rounding tolerance. It does not rescale a total that is not 100% because rescaling can hide a missing isotope or typing error. Display rounding happens only after the weighted average is calculated.


Sources