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Back To Top. However, scientists do have ways to figure out how much a planet weighs. They can calculate how hard the planet pulls on other things. The heavier the planet, the stronger it tugs on nearby objects—like moons or visiting spacecraft. That tug is what we call gravitational pull. Earth's gravitational pull is what keeps the Moon in orbit around our planet. Voyager 1 snapped this picture of Earth and the Moon from a distance of 7.
If you were to step onto a scale on another planet, it would say something different than it does here. For example, if you weigh pounds on Earth, you would weigh only 38 pounds on Mercury. Despite its rapid rotation, Saturn takes a very long time to orbit the Sun - Despite its beautiful and placid appearance, Saturn would not be a very fun place to live.
The average temperature at the cloudtops is extremely cold - 88 K which is degrees Celsius or degrees Fahrenheit. Top Saturn photo courtesy of Solarviews.
This quality or "sluggishness" of matter is its inertia. Mass is a measure of how much inertia an object displays. Weight is an entirely different thing. Every object in the universe with mass attracts every other object with mass. The amount of attraction depends on the size of the masses and how far apart they are.
For everyday-sized objects, this gravitational pull is vanishingly small, but the pull between a very large object, like the Earth, and another object, like you, can be easily measured. All you have to do is stand on a scale! Scales measure the force of attraction between you and the Earth. This force of attraction between you and the Earth or any other planet is called your weight.
If you are in a spaceship far between the stars and you put a scale underneath you, the scale would read zero. Your weight is zero. You are weightless. There is an anvil floating next to you. It's also weightless. Are you or the anvil mass-less?
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