Weight on other worlds·77 kg
the Moon
12.72
kg · ×0.165
Mars
29.21
kg · ×0.379

77 kg — 12.72 kg on the Moon, 29.21 kg on Mars

A body that weighs 77 kg on Earth reads 12.72 kg on the Moon, 29.21 kg on Mars and 194.65 kg on Jupiter. The matter is unchanged; only the pull differs.

On Earth 77 kg

Weight on other worldsWhat the scale readsEarth = 1
the Sun2151.4 kg×27.94
Mercury29.05 kg×0.377
Venus69.65 kg×0.904
Earth77 kg×1
the Moon12.72 kg×0.165
Mars29.21 kg×0.379
Jupiter194.65 kg×2.528
Saturn81.97 kg×1.065
Uranus69.65 kg×0.904
Neptune87.55 kg×1.137
Pluto4.87 kg×0.063
Force of gravity
755.1 N
Jump height goes the other way
302.7 cm

The mass stays; only the weight moves

Mass is the matter you are made of; weight is the pull on it. Nobody loses matter by flying to the Moon — only the needle drops to one sixth. That is why physics measures weight in newtons rather than kilograms.

Jump height goes the other way

For the same push, the height you rise is inversely proportional to gravity. A 50 cm jump on Earth becomes over three metres on the Moon — and it does not depend on how much you weigh.

Some of these have no ground

Jupiter, Saturn, Uranus and Neptune have no solid ground; their figures are taken at the cloud tops. The Sun needs no explanation — nothing could stand there, so the number is arithmetic only.

Nearby weights

How to read this

  • Scale reading = Earth weight × (that world’s gravity ÷ Earth’s gravity).
  • Earth’s gravity is 9.80665 m/s², and every ratio here is measured against it.
  • Force in newtons = mass × gravity. A 70 kg person feels about 686 N on Earth.
  • Jump height is inversely proportional to gravity, so the Moon lifts you six times higher.

Frequently asked questions

Q. What would 77 kg read on the Moon?

12.72 kg, because lunar gravity is 0.165 of Earth’s.

Q. And on Mars?

29.21 kg. Venus gives 69.65 kg and Jupiter 194.65 kg.

Q. What is that as a force?

On Earth it is 755.1 N — 77 kg of mass times 9.80665.

Q. Have you actually lost anything?

No. The matter is still 77 kg everywhere; only the pull the scale measures changes.