Chemistry

Molality Calculator

Calculate molality from moles of solute and mass of solvent.


Molality Calculator

Advertisement

Calculates molality — moles of solute per kilogram of solvent, a concentration unit that doesn’t change with temperature.

How it works

Moles of solute are divided by the solvent’s mass in kilograms.

What this does not include

This does not include dividing by solution volume instead — for that different concentration unit (molarity), use this site’s molarity calculator instead.

How to use this calculator

  1. Enter the moles of solute and the mass of solvent in kilograms.

A worked example

2 moles of solute dissolved in 0.5 kg of solvent: molality = 2 ÷ 0.5 = 4 mol/kg.

0.5 moles in 1 kg of solvent: molality = 0.5 mol/kg.

What the variables mean

Variable Meaning
Moles of solute Amount of dissolved substance
Solvent mass (kg) Mass of the solvent only, not the total solution

Edge cases worth knowing

Molality uses solvent mass, not total solution mass or volume — the key distinction from molarity, which divides by solution volume instead. This makes molality unaffected by temperature-driven volume changes.

Zero solvent mass makes molality undefined — there’s no solvent to dissolve anything into, so the calculator returns no result.

Frequently asked questions

Why use molality instead of molarity?

Molality is based on mass, which doesn’t change with temperature — molarity is based on volume, which expands or contracts as temperature changes, making molality more stable for precise work like freezing point or boiling point calculations.

Does molality use solvent mass or total solution mass?

Specifically the solvent’s mass alone, not the combined solution — this is a key difference from mass percent, which uses the total solution mass.

Where is molality commonly used?

Colligative property calculations, like boiling point elevation and freezing point depression, rely on molality specifically because of its temperature independence.

Be the first to rate this

Written by

P. Nakamura

Chemistry writer

P. Nakamura writes the chemistry calculators, covering solution concentration, stoichiometry, gas laws and colligative properties. Each page separates the definitional part of a formula from the reference constants it depends on, and leaves those constants adjustable where a different solvent or condition would change them. Worked chemistry is only as good as the assumptions stated alongside it.

Reviewed by

D. Petrov

Calculator reviewer — chemistry and environmental science

D. Petrov reviews the chemistry and environmental-science calculators, verifying that reference constants match their stated values and that they remain adjustable wherever a different substance or condition would change them. Review also checks that definitional relationships are not presented as though they required a citation, and that non-definitional values always carry one.

How we write and review

Related calculators