Weigh it, measure it, find out what it is. Density, mass or volume from the other two, with specific gravity, a float or sink verdict and your figure placed on a ladder of 27 materials.
How much do 10 gallons of water weigh?
Weigh it, measure it, find out what it is. Density, mass or volume from the other two, with specific gravity, a float or sink verdict and your figure placed on a ladder of 27 materials.
One US gallon of fresh water weighs 8.345 lb, so 10 gallons is that figure multiplied out. The calculator below is filled in with 10 US gallons and the density of fresh water, 1,000 kg per cubic meter, ready to give the answer in pounds and kilograms.
Two things move that number in practice. Temperature: water is heaviest near 4 degrees C and loses about 0.7 percent by the time it reaches body temperature, which is a few ounces across a large drum. Salt: seawater at 1,025 kg per cubic meter is 2.5 percent heavier, so the same container of it weighs that much more. Both are changed by typing a different density into the field.
The weight of the container is not included. For a tank or a drum, add its empty weight to the figure below before deciding whether a shelf, a roof or a trailer will take it.
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Density in one page, from air to osmium
Weigh something, measure how much room it takes up, and the ratio tells you what it is made of. This page holds the whole picture: the arithmetic in three directions, a ladder of 27 materials spanning a factor of 18,000 from room air to osmium, the conversions between kg/m³, g/cm³ and lb/ft³, and the one rule that decides whether a thing floats. A pebble of 390 g displacing 50 cm³ of water comes out at 7,800 kg/m³, which is steel to within 0.6 percent, and it sinks.
From a kitchen scale to a number you can look up
Three of the boxes below are always enough. Whichever one you leave out is the one the calculator hands back.
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1
Say which of the three you want. Density from a mass and a volume, a mass from a density and a volume, or a volume from a mass and a density. The fields rearrange themselves around the choice.
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2
Weigh the object dry. Grams, kilograms, ounces or pounds. A kitchen scale reading to 1 g is enough for anything bigger than a coin, and each unit has its own selector so nothing needs converting by hand.
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3
Get the volume. A regular shape gives it up to a ruler. Anything else goes into a measuring jug of water, and the rise in level is the answer, because 1 mL of displacement is 1 cm³.
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4
Read the three tiles. Specific gravity, the closest material on record, and whether the thing floats. The ladder underneath places your figure between its neighbors so you can see how far off a guess was.
What the ratio actually measures
Density is mass per unit of volume, written rho = m / V, and it is a property of the material rather than of the object. Half a brick has half the mass and half the volume, so it keeps the same density. That is what makes it useful for identification: a number that does not care how big your sample is can be compared against a table that nobody measured your sample for.
The metric system was built around one of these values on purpose. A cubic centimeter of water at its densest weighs one gram, which is why water sits at exactly 1,000 kg/m³ and why specific gravity, the ratio of a density to water's, reads as the same digits as g/cm³. A hydrometer floating in a brine tank and a spec sheet quoting 1.150 g/cm³ are saying the identical thing.
Temperature moves the figure, though rarely enough to matter for a solid. Water is heaviest near 4 degrees C and loses about 0.7 percent by the time it reaches body temperature. Gases are the opposite case: room air at 1.204 kg/m³ is around 830 times lighter than the water beside it, which is why the same object that sinks like a stone in a pool is effectively weightless in the breeze above it.
The oldest way to get a volume is still the best one for an awkward shape. Lower the object into a jug of water and read the rise, or hang it from a scale and weigh it twice, once in air and once submerged. The difference between those two readings in grams is the volume in cubic centimeters, exactly, with no ruler involved. That is the trick attributed to Archimedes, and it is the reason a jeweler can check a ring without cutting it open.
Materials by the weight of one liter
The column that makes this concrete is the last one: how much a single liter of the stuff weighs in pounds. A liter of gold is heavier than most people can lift with one hand comfortably, and a liter of osmium is heavier again than that.
| Material | kg/m³ | g/cm³ | lb/ft³ | 1 liter weighs |
|---|---|---|---|---|
| Air at room temperature | 1.204 | 0.0012 | 0.08 | 0.04 oz |
| Styrofoam | 25 | 0.025 | 1.56 | 0.88 oz |
| Cork | 180 | 0.180 | 11.24 | 0.40 lb |
| Pine | 530 | 0.530 | 33.09 | 1.17 lb |
| Oak | 720 | 0.720 | 44.95 | 1.59 lb |
| Gasoline | 750 | 0.750 | 46.82 | 1.65 lb |
| Ice | 917 | 0.917 | 57.25 | 2.02 lb |
| Olive oil | 920 | 0.920 | 57.43 | 2.03 lb |
| Fresh water | 1,000 | 1.000 | 62.43 | 2.20 lb |
| Seawater | 1,025 | 1.025 | 63.99 | 2.26 lb |
| Concrete | 2,400 | 2.400 | 149.83 | 5.29 lb |
| Glass | 2,500 | 2.500 | 156.07 | 5.51 lb |
| Aluminum | 2,700 | 2.700 | 168.56 | 5.95 lb |
| Granite | 2,750 | 2.750 | 171.68 | 6.06 lb |
| Titanium | 4,507 | 4.507 | 281.36 | 9.94 lb |
| Steel | 7,850 | 7.850 | 490.06 | 17.31 lb |
| Iron | 7,874 | 7.874 | 491.56 | 17.36 lb |
| Brass | 8,500 | 8.500 | 530.64 | 18.74 lb |
| Copper | 8,960 | 8.960 | 559.35 | 19.75 lb |
| Silver | 10,490 | 10.490 | 654.87 | 23.13 lb |
| Lead | 11,340 | 11.340 | 707.93 | 25.00 lb |
| Mercury | 13,546 | 13.546 | 845.65 | 29.86 lb |
| Tungsten | 19,250 | 19.250 | 1,201.74 | 42.44 lb |
| Gold | 19,300 | 19.300 | 1,204.86 | 42.55 lb |
| Platinum | 21,450 | 21.450 | 1,339.08 | 47.29 lb |
| Iridium | 22,560 | 22.560 | 1,408.37 | 49.74 lb |
| Osmium | 22,590 | 22.590 | 1,410.25 | 49.80 lb |
Values are for solid material at room temperature with no voids in it. A cast part with porosity, a board with grain and knots, or a powder with air between the grains will all read lower than the row above, and that gap is itself a measurement: it tells you what fraction of the sample is empty space.
Converting between the three units without losing a zero
Three units are in daily use and they differ by factors that are easy to fumble. The middle column is the one to memorize, because it is the only conversion most people ever need in both directions.
| Going from | To | Multiply by | Where you meet it |
|---|---|---|---|
| g/cm³ | kg/m³ | 1,000 | lab data sheets into engineering tables |
| lb/ft³ | kg/m³ | 16.0185 | US building specs into metric software |
| kg/m³ | lb/ft³ | 0.062428 | anything imported reading in metric |
| oz/in³ | kg/m³ | 1,730.0 | machinist tables and casting weights |
| specific gravity | g/cm³ | 1 | hydrometers, brewing, battery acid |
Things this number quietly settles
Reading the verdict: floats, sinks, or hovers
The float rule has no arithmetic in it at all: below 1,000 kg/m³ a thing floats in fresh water, above it the thing sinks, and the fraction that stays under the surface is just the density divided by the water's. Oak at 720 rides with 72 percent of itself wet. Gasoline at 750 sits on top of a puddle rather than mixing into it, which is why a fuel spill spreads instead of sinking. Pure aluminum at 2,700 sinks in water and floats in mercury, a fluid five times heavier again.
Where the rule misleads is with objects rather than materials. A steel hull floats because the shape encloses air, so the density that matters is the whole vessel's, not the plate's. Run the calculator on a boat's total mass and total displaced volume and you will get a figure below 1,000 every time it is still afloat.
What the reading does not tell you
Related tools
Temperature Converter
All four scales from one reading, because a reference density is quoted at a stated temperature - See calculator
Buoyancy Calculator
Takes the float verdict further: how deep it sits, how much more it can carry, what it weighs under water - See calculator
Acceleration Formula Calculator
The other side of the same bookkeeping: how a mass changes speed once something pushes it - See calculator
Thermal Expansion Calculator
Why a heated part takes up more room, and by how much, which is where a density shift comes from - See calculator
Specific Heat Calculator
The energy side of a material's identity: how much heat it takes to move its temperature - See calculator
Mass Unit Converter
Moves a weight between kg, lb, oz and grams when that is the only step you need - See calculator
Volume Unit Converter
Cubic inches to liters to gallons, for when the volume arrives in the wrong unit - See calculator
See also
Calculator verified by the LiczGrupa.pl team
Content, formulas and results have been reviewed for accuracy and relevance by our team of specialists.

Reviewed by: Natalia Skrzek