Gravity is an acceleration due to mass. Weight is a force dependent on gravity. Force = mass x acceleration. Weight = Mass x gravity.
Gravity is dependent upon the mass of both bodies divided by the distance between them. The further apart two bodies are the lesser the gravitational pull. The greater the combined mass the greater the gravitational pull. That is why the further from the Earth one gets the less they weigh though their mass is unchanged.
Yes, weight is directly proportional to the force of gravity acting on an object. If the force of gravity changes, the weight of the object will also change accordingly.
Weight. The force of weight experienced by an object can change when the acceleration due to gravity changes. Weight is directly proportional to the acceleration due to gravity, so an increase or decrease in gravity will result in a corresponding change in weight.
No, an object's mass remains constant regardless of changes in gravity. Mass is an intrinsic property of an object and is not affected by the gravitational force acting on it. However, an object's weight, which is the force exerted by gravity on the object, will change with variations in gravitational pull.
I suppose you are asking about what forces change when acceleration due to gravity changes. In this case, the formula for forces concerning acceleration due to gravity is as such: fg=mg. When acceleration due to gravity(g) changes, it affects the force of gravity which is also known as the weight of the object. This is shown as fg.
Mass does not change with location because it is a measure of the amount of matter in an object. However, weight does change with location because it is the measure of the gravitational force acting on an object. So, an object will weigh less where gravity is weaker, like in outer space.
Yes, weight is directly proportional to the force of gravity acting on an object. If the force of gravity changes, the weight of the object will also change accordingly.
The weight of the object would change if gravity changes. cw: Yes, if the FORCE of gravity changes, the FORCE of the object in the downward direction changes.
No, the mass of an object remains constant regardless of changes in gravity. Mass is an intrinsic property of an object and does not change with gravitational influence. The weight of an object, however, can change with variations in gravity, as weight depends on the gravitational force acting on the object.
Weight. The force of weight experienced by an object can change when the acceleration due to gravity changes. Weight is directly proportional to the acceleration due to gravity, so an increase or decrease in gravity will result in a corresponding change in weight.
When weight changes due to gravity, mass remains the same. Mass is the amount of matter in an object, while weight is the force exerted on an object due to gravity. So, when the gravitational force changes, the weight of an object changes, but its mass remains constant.
No, an object's mass remains constant regardless of changes in gravity. Mass is an intrinsic property of an object and is not affected by the gravitational force acting on it. However, an object's weight, which is the force exerted by gravity on the object, will change with variations in gravitational pull.
I suppose you are asking about what forces change when acceleration due to gravity changes. In this case, the formula for forces concerning acceleration due to gravity is as such: fg=mg. When acceleration due to gravity(g) changes, it affects the force of gravity which is also known as the weight of the object. This is shown as fg.
Weight is gravitational force on an objects Mass. Mass don't change when gravity changes but the weight does.
If you are moving at different altitude the gravity will changes and so the weght will changes
If you are moving at different altitude the gravity will changes and so the weght will changes
No. The mass of an object doesn't change (Law of Conservation of Mass), therefore its weight won't change either (weight = mass x gravity).
Mass does not change with location because it is a measure of the amount of matter in an object. However, weight does change with location because it is the measure of the gravitational force acting on an object. So, an object will weigh less where gravity is weaker, like in outer space.