Radioactive Decay Calculator

Enter a starting amount or activity, elapsed time, and half-life to calculate what remains or solve for another radioactive decay value.

Quantity

Time

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How to use our Radioactive Decay Calculator

  1. Choose the value you need under "What do you want to find?"
  2. For an amount problem, enter the known initial or remaining amount and choose the unit used for both values.
  3. For an activity problem, enter the known activity values in the same activity unit. Activity is not radiation dose.
  4. Enter the known elapsed time and half-life, then choose the unit printed with each time value.
  5. Select "Calculate" and check the result against the half-lives elapsed. For example, after 2 half-lives, 25 percent should remain.
Example inputs for Radioactive Decay Calculator
Example inputs for Radioactive Decay Calculator

Definitions

Half-life: The time for the expected number of undecayed nuclei, or their activity, to fall to one half of its starting value.

Initial amount: The material quantity at the start of the time interval, such as grams, moles, or atoms.

Remaining amount: The material quantity left after decay during the entered elapsed time.

Activity: The rate of radioactive nuclear transformations. Becquerel (Bq) and curie (Ci) are activity units; activity is different from absorbed dose and dose equivalent. [1] [2]

Elapsed half-lives: Elapsed time divided by half-life after both times are converted to the same time basis.

Percent remaining: The part of the starting amount or activity that remains, written as a percent. One half-life leaves 50 percent; two half-lives leave 25 percent.


Amount Remaining by Half-LivesExpected fraction of the starting amount or activity after each full half-life. Each additional half-life cuts the remaining amount or activity in half.Amount Remaining by Half-LivesExpected fraction of the starting amount or activity after each full half-life.0 half-lives100 %1 half-life50 %2 half-lives25 %3 half-lives12.5 %Elapsed half-lives
Amount Remaining by Half-Lives
Each additional half-life cuts the remaining amount or activity in half.

Common mistakes and quick fixes

Mistake: Using different units for the initial and remaining amounts.
Fix: Check What do you want to find? and then recalculate. Choose one amount unit and convert one value first if needed, so both amount values use that unit.

Mistake: Treating elapsed time in days as though a half-life stated in years were also in days.
Fix: Check What do you want to find? and then recalculate. Select the printed unit for each value. The calculator converts the times to a shared basis.

Mistake: Entering a remaining amount or activity larger than its initial value while finding elapsed time.
Fix: Check What do you want to find? and then recalculate. For forward radioactive decay, the target must be less than or equal to the starting value.

Mistake: Using Gy, Sv, rad, or rem as an activity unit.
Fix: Check What do you want to find? and then recalculate. Choose Bq, Ci, or a listed prefix such as mCi or uCi. Dose units measure a different quantity.

Mistake: Entering 0 for half-life.
Fix: Check What do you want to find? and then recalculate. Enter a positive half-life from the problem or a reference that matches the exact isotope and nuclear state.


Limitations & Key Assumptions / Boundary Conditions

  • The calculation assumes one radioactive substance with a constant half-life and ordinary exponential decay.
  • It describes the expected behavior of a large population of atoms; the decay time of one individual atom is random.
  • Initial and remaining amounts must be the same kind of quantity and use the same selected amount unit.
  • Initial and remaining activity values must use the same selected activity unit. The calculator keeps that unit and does not convert between activity units.
  • Activity is not absorbed dose or dose equivalent. This calculator does not estimate exposure, shielding, dose, or health risk.
  • A year is converted as 365.25 days. Results can differ from a source that uses a different year convention.
  • For very long intervals, the calculated value can be too small for ordinary decimal display, so a displayed zero can mean an extremely small positive value.

Methodology

Decay calculation

The calculator converts elapsed time and half-life to seconds before comparing them. It then finds the number of half-lives that passed and applies the resulting fraction to the starting amount or activity.

n (elapsed half-lives) = t (elapsed time) / T (half-life)

f (fraction remaining) = 2-n

N (remaining value) = N0 (initial value) x f

percent remaining = 100 x f

Solving for a missing value

For elapsed time or half-life, the calculator first finds elapsed half-lives from the ratio of the initial value to the lower remaining value. For an initial amount, it divides the remaining amount by the fraction remaining.

n = ln(N0 / N) / ln(2)

t (elapsed time) = n x T

T (half-life) = t / n

N0 (initial amount) = N (remaining amount) / f

Worked example

Start with 100 g, use a half-life of 10 days, and let 20 days pass. Two half-lives have passed, so the fraction remaining is 0.25. The remaining amount is 25 g, and 25 percent remains.


Sources