The motion of a mass is the result of all the forces acting on it, and how their
strengths and directions combine. If gravity is one of the forces, then it just
participates in the group, exactly like any of the other forces does. Its effect
on the motion of the mass is the same as the effect of any other force that has
the same strength and direction as the gravitational force.
An object has a gravitational pull due to its mass. Gravitational force is a fundamental force of nature that arises from the mass of an object pulling other objects towards it. The greater the mass of an object, the stronger its gravitational pull.
The gravitational force between objects can be caused by their mass and the distance between them. The greater the mass of the objects and the shorter the distance between them, the stronger the gravitational force will be.
Yes, and you can do even better than that.Weight IS the gravitational force on a mass.
No, inertial and gravitational acceleration are not equal. Inertial acceleration is caused by changes in velocity due to forces acting on an object, while gravitational acceleration is caused by the force of gravity on an object due to its mass.
Gravitational attraction is caused by the mass of the earth. As you go down in the earth, the amount of mass of earth still between you and the centre of earth decreases. Thus as this effective mass decreases, the gravitational attraction decreases.
The mass of an object in a gravitational field is called the object's "mass".The presence or absence of a gravitational field has no effect on the mass.
Gravity on Earth is caused by the mass of the planet. Every object with mass exerts a gravitational force on other objects, pulling them towards it. The gravitational force on Earth is what keeps us grounded and determines the weight of objects.
Gravitational force F = mass x g where g is the gravitational acceleration.
No, gravitational forces are caused by the mass of an object, while electrostatic forces are caused by the electric charge of an object. While both forces follow an inverse square law, they arise from different properties of matter.
Gravity is determined by mass. Everything with mass has gravitational pull (including you). Planets with more mass have higher gravitational pulls
Inertial mass and gravitational mass are the same thing. This means that an object's resistance to changes in motion (inertial mass) is equal to the force of gravity acting on it (gravitational mass).
Gravitational mass is a measure of how strongly an object responds to the force of gravity. It determines the force of gravity acting on an object and is equal to the inertial mass, which measures an object's resistance to acceleration. In Newtonian physics, these two types of mass are equivalent.