Planetg at equatorWeight of a 100kg manMercury0.3838Venus0.90490.4Earth0.9973299.732Mars0.37637.6Jupiter2.528252.8Saturn1.065106.5Uranus0.88688.6Neptune1.14114
All objects with mass have gravity, so all planets have gravity. However, the strength of gravity depends on the mass of the planet. Earth's gravity is strong enough to hold objects to its surface, which is why we feel it as weight.
Your weight on a planet is determined by the strength of its gravity. Gravity is the force that pulls objects towards the planet's center. The more massive the planet, the stronger the gravity, resulting in a greater weight for objects on its surface.
Your weight would change on another planet due to differences in gravitational pull. For example, if you were on a planet with stronger gravity than Earth, your weight would increase. Conversely, if you were on a planet with weaker gravity, your weight would decrease.
Weight is caused by being pulled down by a planet, therefore it changes from planet to planet. When in space we orbit a planet and the acceleration of the orbit counter-acts the weight - resulting in weightlessness.
On a planet with a surface gravity of approximately 2.65 m/s^2, which is around 0.27 times that of Earth's gravity. This can be calculated using the formula weight (in newtons) = mass (in kg) x acceleration due to gravity (in m/s^2).
weight
The importantidea here is a planet's "surface gravity". That's the measure of the planet's gravitational "pull"at its surface. The larger this number, the heavier the weight ofan object on the surface of the planet. For example, the "surface gravity" on Mars is only 38% of the Earth's. So, if you could be on the surface of Mars, your weight would be 38% of your weight on Earth.
To find your weight on other planets, you would multiply your weight on Earth by the planet's surface gravity relative to Earth's surface gravity. For example, your weight on Mars would be your weight on Earth multiplied by 0.38, as Mars' surface gravity is 0.38 times that of Earth.
weight
weight
The force of gravity on a person or object on the surface of a planet is called weight. It is the result of the gravitational attraction between the object and the planet. Weight is measured in units of force, such as newtons or pounds.
Your weight is directly proportional to the mass and gravity of the planet, if the planet has a greater gravity and mass, you will weigh more.
The higher you go above the surface of a planet the weaker gravity gets. More specifically, the strength of gravity is inversely proportional to the square of your distance from the planet's center.
Your weight is directly proportional to the mass and gravity of the planet, if the planet has a greater gravity and mass, you will weigh more.
We would call it the person or object's "weight" on that planet.
The acceleration of gravity on a planet determines how fast an object will fall when dropped, affecting the weight of objects on the surface. This acceleration also impacts the force needed for objects to stay grounded or lifted from the surface. Overall, gravity's acceleration is essential in understanding an object's behavior on the planet's surface.
The force of gravity on a person or object at the surface of a planet is calculated by the product of the mass of the person or object and the gravitational constant acceleration for the planet. For Earth, the gravitational acceleration is 9.8 m / s^2.