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The weight and height of an object on Earth give it gravitational potential energy. This type of potential energy is based on the object's position in a gravitational field relative to the surface of the Earth.
The weight and height of an object give it gravitational potential energy. Gravitational potential energy is the energy stored in an object due to its vertical position in a gravitational field. It depends on an object's mass, height above a reference point, and the strength of the gravitational field.
On earth, mass and height. PE = mgh Weight and height. (note that m*g, as above, equals weight). This therefore applies not just on Earth.
Mass and Weight The gravitational force Earth exerts on an object is the weight of the object. Because weight is a force, it is measured in newtons. Weight is not the same as mass. Mass is the amount of matter an object contains, and is measured in kilograms. Even if the mass of an object doesn't change, its weight will change if its distance from Earth changes
The weight of any object on the Moon is about 1/6 of the weight of the same object on the Earth.
The weight and height of an object on Earth give it gravitational potential energy. This type of potential energy is based on the object's position in a gravitational field relative to the surface of the Earth.
The weight and height of an object give it gravitational potential energy. Gravitational potential energy is the energy stored in an object due to its vertical position in a gravitational field. It depends on an object's mass, height above a reference point, and the strength of the gravitational field.
On earth, mass and height. PE = mgh Weight and height. (note that m*g, as above, equals weight). This therefore applies not just on Earth.
Mass and Weight The gravitational force Earth exerts on an object is the weight of the object. Because weight is a force, it is measured in newtons. Weight is not the same as mass. Mass is the amount of matter an object contains, and is measured in kilograms. Even if the mass of an object doesn't change, its weight will change if its distance from Earth changes
Near the surface of the Earth, every kilogram has a weight of 9.8 Newton. (Weight is a type of force.)
Energy which is a result of an object's height above the earth is potential energy.
"Does The Height of an Object Affect its mass?"*short answer - no. longer answer - mass is constant for a given object... WEIGHT is what changes at different heights above earth.*learn to spell, noob!
On the Earth, the object weighs 6.04 times as much as its weight on the moon.
The weight of any object on the Moon is about 1/6 of the weight of the same object on the Earth.
The weight of an object on Earth is influenced by the mass of the object and the acceleration due to gravity. Weight is calculated by multiplying an object's mass by the acceleration due to gravity (9.8 m/s^2 on Earth). Therefore, variations in either mass or gravity can affect an object's weight on Earth.
The weight of an object on the moon's surface is 16.3% of the same object's weight on the earth's surface.
The weight of an object on Earth is the same as its mass, which is 1kg in this case. Weight is a measure of the force of gravity acting on an object's mass.