Truncated Cone Volume Calculator

The truncated cone volume calculator accepts whatever input data you have and uses it to tell you the volume of your frustum.

Clear
Volume527.787566
Surface area382.947684
Surface-to-volume ratio0.725572falls as the shape gets bigger
Slant height8.544004
Lateral area241.576015
Base area113.097336
Top area28.274334
Full cone height16if extended to a point

The formula

V = ⅓πh(R² + Rr + r²)

Not the average of the two circles

The volume uses R² + Rr + r², not (R² + r²)/2. The extra Rr cross term matters: for R = 6 and r = 3 the correct factor is 63 while the naive average gives 22.5. A frustum holds more than intuition suggests because the wider end dominates.

Setting r = R gives a cylinder and r = 0 gives a cone, so this one formula covers all three.

Volume scales with the cube

Double every length and the surface area quadruples while the volume grows eightfold. This is why doubling a container’s dimensions gives eight times the capacity but only four times the material — and why scaling models up rarely works the way intuition suggests.

The one-third family

Cones and pyramids are always exactly one third of the prism or cylinder that would enclose them, whatever the base shape. A sphere sits at two thirds of its enclosing cylinder — the result Archimedes asked to have carved on his tomb.

Units

Enter every dimension in the same unit; volume comes out cubed and surface area squared. If you work in centimetres, one litre is 1,000 cm³, which is why the capacity row is shown on the box and cylinder pages.