Exponential Decay Calculator

Give it a starting amount and either a half-life or a decay constant, and it works out what is left after any stretch of time, from a coffee's caffeine to a vial of iodine-131.

Exponential decay worksheet

Load an example
I know the
Any unit works: milligrams, becquerels, volts, item count.
Time for the amount to drop by exactly half.
How long after the starting amount was measured.
Keep this the same unit as the half-life or decay constant above.

Four different things, one shared curve

Exponential decay describes anything that loses a constant fraction of itself per unit of time, not a constant amount. A quantity that drops by half every fixed stretch, whether that stretch is five hours or five thousand years, is running on the same equation.

That single rule covers a wider range of situations than most people expect:

Half-lives worth knowing, in wildly different fields.
Substance or systemHalf-lifeField
Iodine-131 (physical decay)8.02 daysNuclear medicine
Caffeine, average adult3 to 7 hoursPharmacology
Carbon-145,730 yearsArchaeological dating
Tritium12.3 yearsNuclear physics
A discharging RC circuit0.693 × RCElectronics

The equation behind every row is N(t) = N₀ × e−kt, where N₀ is the starting amount, k is the decay constant, and t is elapsed time. After one half-life, 50 percent remains. After two, 25 percent. After three, 12.5 percent. Each additional half-life cuts what is left in half again, and the amount never technically reaches zero, only closer to it.

The formula is exact. The number you feed it usually isn't.

Physical decay constants, like iodine-131's 8.02-day half-life, come from measured nuclear physics and barely change between sources. Biological and behavioral ones swing hard.

Caffeine's half-life runs from about three hours to seven, depending on liver enzyme activity, pregnancy, smoking, and even other medications. A calculator built for one person's metabolism will be wrong for the next. Iodine-131 in a person's thyroid clears faster than its 8.02-day physical half-life too, because the body also excretes it, so doctors track a shorter "biological" half-life instead of the textbook number.

Pick the half-life or decay constant that matches the actual situation, not the first search result. When two sources disagree, the calculation is only as trustworthy as the weaker of the two inputs.

Where a fraction disappears every tick, not a fixed amount

First-order decay shows up anywhere the rate of loss depends on how much is left:

  • Radioactive tracers. Medical imaging doses like iodine-131 or technetium-99m are timed against their half-life so a scan happens while enough activity remains to detect, and disposal waits long enough for the rest to fall to background levels.
  • Drug elimination. Most medications clear the bloodstream through first-order kinetics, where a constant percentage leaves per hour rather than a constant milligram amount. Toolexe's own Coffee Kick Calculator runs this exact math for caffeine, pre-loaded with absorption timing. Reach for this page instead when the half-life is already known, or when the substance isn't caffeine at all.
  • Capacitor and inductor discharge. Voltage across a discharging capacitor falls exponentially, with a time constant of RC seconds and a half-life of 0.693 × RC.
  • Falling engagement or retention. A subscriber base or ad campaign that loses a steady percentage of its audience each week follows the same shape, even though nothing is radioactive about it.

Growth runs the same equation with the sign flipped. The Compound Interest Calculator solves that mirror image, where a balance gains a constant fraction of itself instead of losing one.

What this calculator will not get right

  • Decay chains. Radon-222 decaying from radium-226, which itself decays from other isotopes further up the chain, needs a system of equations, not one N(t) formula. This page handles a single decay step only.
  • Zero-order kinetics. Ethanol leaves the bloodstream at a roughly constant amount per hour, not a constant fraction, so plugging alcohol into a half-life formula gives the wrong curve entirely.
  • Decay toward a nonzero floor. A cup of coffee cooling toward room temperature, or a drug held steady by repeat dosing, settles on some baseline above zero. This tool assumes decay runs all the way down.
  • Unit mismatches. The half-life or decay constant and the elapsed time have to share the same time unit. The calculator will not silently convert hours to days for you.

Questions before you trust the number

The details that change what "remaining amount" means.

What is the difference between half-life and decay constant?

They describe the same rate two different ways. Half-life is a duration, the time for half the amount to disappear. The decay constant k is a rate, the fraction lost per unit of time. They convert through k = ln(2) divided by the half-life. This calculator only needs one of the two.

Why did I get a blank or unusual result?

Check that the starting amount and the half-life or decay constant are both positive numbers, and that elapsed time is zero or higher. A half-life or decay constant of zero has no defined answer, since the amount would either never change or vanish instantly.

Can I use this for drug elimination in the body?

Yes, for drugs cleared through first-order kinetics, which covers most medications. It will not work for the small group cleared through zero-order kinetics, like ethanol at typical drinking levels, where a fixed amount leaves per hour instead of a fixed percentage.

Do elapsed time and half-life need to be in the same unit?

Yes. If the half-life is in days, enter elapsed time in days too. Mixing hours with a half-life given in days will produce a number that looks plausible but is wrong by whatever factor separates the two units.

Does this handle a decay chain, like radon following radium?

No. A decay chain needs a separate equation for each isotope in the sequence, since a daughter product is being created and decaying at the same time. This calculator solves a single, independent decay step.

Is anything I type here sent anywhere?

No. Every calculation runs in your browser, and nothing is logged, stored, or uploaded.