Arrow Kinetic Energy & Momentum

Energy and momentum from arrow weight and speed.

Free, no sign-upUpdated September 2026

How this works

Kinetic energy (ft-lb) = arrow weight (gr) × speed² (fps) ÷ 450,240
Momentum (lb·s) = arrow weight (gr) × speed (fps) ÷ 225,218

These are the same physics formulas used for firearms bullets (see the Muzzle/Downrange Energy calculator), just applied to arrow weight and speed instead. Because arrows are far slower and heavier relative to their speed than bullets, momentum plays a proportionally bigger role in how well an arrow penetrates.

Energy for the label, momentum for the penetration

Kinetic energy is the number most often quoted in minimum-energy guidelines for bowhunting big game, but many bowhunters also watch momentum closely since it tracks more directly with how deeply and reliably a fixed-blade or mechanical broadhead drives through bone and tissue. A heavier, slightly slower arrow often out-penetrates a lighter, faster one with the same kinetic energy.

Frequently asked questions

Which number matters more for hunting — energy or momentum?

Both are commonly cited, but many bowhunting educators point to momentum as tracking actual penetration more closely, while energy is the figure most often quoted in minimum-energy guidelines by game size.

Can two arrows have the same energy but different momentum?

Yes — since energy scales with speed squared and momentum scales with speed directly, a lighter, faster arrow and a heavier, slower one can match on energy while differing meaningfully on momentum.

What's a reasonable kinetic energy target for deer-sized game?

Many hunting educators cite roughly 25 ft-lb as a commonly referenced rule-of-thumb minimum for deer-sized game, with larger animals often suggested at 40+ ft-lb — check guidance specific to your target species.