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Maths

Antilog Calculator

Finds the antilogarithm of a value, the number a log of that size came from, in base 10 or base e.

Published 25 August 2026

What this calculator does

An antilog calculator does the opposite of a normal log calculation. Where a logarithm takes a number and tells you the power needed to produce it, an antilog starts from that power and reconstructs the original number: if log(x) = value, then antilog(value) = x.

This calculator handles the two bases people run into most often: base 10, the common log used in science and engineering, and base e, the natural log (ln) used throughout calculus and growth modelling. Enter a value and a base, and it returns 10 raised to that value, or e raised to that value.

The formula

FormulaAntilog base 10: x = 10^value; Antilog base e (natural log): x = e^value

Antilog is simply the base raised to the power of the value entered. For base 10, antilog(value) = 10^value; for base e, antilog(value) = e^value, where e is approximately 2.71828. The calculator also runs the result back through the matching logarithm as a check, since log₁₀(10^value) and ln(e^value) should return the original value entered.

TermMeaning
AntilogarithmThe inverse of a logarithm: given a log value, the number that produces it when the log is taken.
Common log (base 10)The logarithm using base 10, written log or log₁₀, where the antilog is 10 raised to the given power.
Natural log (base e, ln)The logarithm using base e ≈ 2.71828, written ln, where the antilog is e raised to the given power.

The inputs explained

FieldWhat to enter
Log valueThe log value you want to reverse, sometimes called the mantissa and characteristic combined in older log-table workflows.
Log baseChoose base 10 for a common log value, or base e if the value came from a natural log (ln).

When to use it

Reversing a pH, decibel or Richter-scale figure

Several real-world scales are defined as logarithms of an underlying quantity. Given the scale reading, antilog recovers the underlying concentration, intensity or amplitude that produced it.

Checking working on a log-based homework problem

If a worked answer states log(x) = 2.35, taking the antilog of 2.35 confirms what x actually is, which is a quick way to sanity-check an equation solved using logarithms.

Undoing a natural log in a growth or decay equation

Continuous growth and decay problems often reduce to ln(value) = something. Antilog with base e reverses that step directly, without rearranging the original equation by hand.

Worked examples

Every figure in the tables below is produced by this page’s own calculator at build time, so the numbers and the tool always agree. Select any row to load that scenario.

Antilog base 10 for a range of values

Common log values and the number each one represents.

x = 10^value
Log valueAntilog
0.01.0000
0.53.1623
1.010.0000
2.0100.0000
3.01,000.0000
4.010,000.00
Antilog base 10 of 2 is exactly 100, since 10² = 100; each extra whole number in the log value multiplies the antilog by a further factor of 10.

Antilog base e (natural log) for a range of values

Natural log values and the number each one represents.

x = e^value
Log valueAntilog
0.01.0000
0.51.6487
1.02.7183
1.54.4817
2.07.3891
3.020.0855
Antilog base e of 1 is e itself, about 2.71828, and antilog base e of 0 is 1, since anything raised to the power of zero equals 1.

Questions

What is antilog on a calculator?

On a scientific calculator, antilog is usually the second function above the log or ln key, often labelled 10ˣ or eˣ. Pressing shift (or 2nd) then log raises 10 to the displayed value; shift then ln raises e to the displayed value.

How is antilog different from just typing the exponent?

It is not different mathematically, antilog base 10 of a value is exactly 10 raised to that value, and antilog base e is exactly e raised to that value. "Antilog" is simply the traditional name for that operation when it is being used to reverse a logarithm.

Can the log value be negative?

Yes. A negative log value produces an antilog between 0 and 1, since a negative exponent gives a fraction rather than a whole number, for example antilog base 10 of -1 equals 0.1.

Why does the calculator show a check that inverts the answer?

Taking the log of the antilog should return the original value entered, within rounding. Showing that check confirms the two operations are genuine inverses of each other and catches any base mix-up.

To work in the other direction, from a base and an exponent to the resulting value, see the exponential function calculator. For growth expressed as a percentage rate rather than a raw base, see the exponential growth calculator.