All masses exert a gravitational force on other masses, causing them to attract each other. The strength of this force depends on the masses of the objects and the distance between them, as described by Newton's law of universal gravitation. This force is responsible for phenomena such as orbits of planets around the sun and the attraction between objects on Earth.
A combination of the bodies' inertia, and the Sun's gravitational attraction.
Gravitational attraction between Earth and objects is determined by their mass and distance. The more massive an object is, the stronger the attraction. Similarly, the closer an object is to Earth, the stronger the gravitational pull.
if the sun turned into a black hole we would be gone in seconds... it wouldn't matter Another answer: The Earth gravitational attraction would remain the same. Sun's gravitational attraction would also remain the same. Why? Because their mass would remain the same.
In case of electric force there are both repulsive and attractive. But in case of gravitational force, only attractive force. Electrical force between electric charges. Gravitational force between masses. In electric force we use a constant known as permittivity of the medium. But in gravitational force a universal constant known as Gravitational constant is used. Electrical force is very much greater than gravitational force.
Its mass.
Its mass.
Gravitational force is the attraction between two masses due to their mass and distance from each other. It is responsible for keeping planets in orbit around the sun and objects on the Earth's surface. The strength of gravitational force decreases with distance between the masses.
Gravitational force.
"attraction"
Gravitational force is the force of attraction that objects with mass exert on each other. It is responsible for keeping objects like planets in orbit around the sun and for creating tides on Earth. The strength of gravitational force depends on the mass of the objects and the distance between them.
Gravitational field mass, also known as gravitational mass, refers to the property of an object that determines the strength of its gravitational attraction to other objects. It is the mass that appears in Newton's law of gravitation, which describes the force of attraction between two objects based on their masses and the distance between them.
Gravity is a force of attraction between any two objects with mass. The strength of the gravitational force is determined by the masses of the objects and the distance between them.
The gravitational attraction between two masses depends on the product of the masses. If either mass increases, then the product increases, and so does the strength of the forces between them.
The gravitational attraction between two masses depends on their masses and the distance between them. If the masses are large and close together, they would have the greatest gravitational attraction.
If there is more mass, there will be more gravitational attraction.
There is more gravitational attraction between you and the building because the building has more mass.