Because basically, every object in the Universe attracts every other object.
The gravitational force between two bowling balls would be greater than the gravitational force between two feathers, assuming the distance between them is the same. This is because the gravitational force is directly proportional to the mass of the objects involved, and bowling balls have much greater mass than feathers.
The gravitational force between two bowling balls would be greater than the gravitational force between two feathers. This is because the force of gravity is directly proportional to the mass of the objects interacting. Since bowling balls have a much greater mass than feathers, they would exert a stronger gravitational force on each other.
The object with the most gravitational force would be the bowling ball, as it has the greatest mass compared to a sand grain, marble, and tennis ball. Gravitational force increases with mass, so the object with the highest mass will have the strongest gravitational force.
All three objects will exert a gravitational force. The strength of the force depends on the mass of each object. The bowling ball will exert the greatest gravitational force due to its larger mass compared to the feather and the book.
Decrease. Gravitational force is inversely proportional to the square of the distance between two objects, so as the distance between them increases, the gravitational force between them decreases.
The gravitational force between two bowling balls would be greater than the gravitational force between two feathers, assuming the distance between them is the same. This is because the gravitational force is directly proportional to the mass of the objects involved, and bowling balls have much greater mass than feathers.
The gravitational force between two bowling balls would be greater than the gravitational force between two feathers. This is because the force of gravity is directly proportional to the mass of the objects interacting. Since bowling balls have a much greater mass than feathers, they would exert a stronger gravitational force on each other.
The object with the most mass, as gravitational force is dependent on mass. Therefore the bowling ball exerts more gravitational force than a baseball or a football.
The object with the most gravitational force would be the bowling ball, as it has the greatest mass compared to a sand grain, marble, and tennis ball. Gravitational force increases with mass, so the object with the highest mass will have the strongest gravitational force.
All three objects will exert a gravitational force. The strength of the force depends on the mass of each object. The bowling ball will exert the greatest gravitational force due to its larger mass compared to the feather and the book.
every thing has a gravitational force, the more mass however will increase the force for instance if i dropped a bowling ball it will fall tward the earth rather than the earth falling to it, but if that bowling ball was in space and for some reason there was a marble floating along it would be pulled tward the bowling ball. if you get on youtube sometime there is this seires that steven Hawkins did and he talks about gravity a little. also look up carl segan videos (i like his videos better)
Decrease. Gravitational force is inversely proportional to the square of the distance between two objects, so as the distance between them increases, the gravitational force between them decreases.
the gravitational force between them decreases.
The gravitational force between the Earth and sun certainly depends on the distance between the Earth and sun. But the gravitational force between, for example, the Earth and me does not.
Any amount of force can stop either kind of ball. But a greater force is required to stop a bowling ball than to stop a soccer ball IN THE SAME TIME, because the bowling ball has more mass, and therefore more momentum and more kinetic energy.
If the distance between the two masses is tripled, the gravitational force between them will decrease by a factor of 9 (1/3)^2. Therefore, the gravitational force will be 4 N.
Gravitational force changes with the mass of the objects and the distance between them. As mass increases, the gravitational force also increases. Similarly, as the distance between two objects increases, the gravitational force decreases.