No, the force of gravitational attraction between two objects depends on their masses and the distance between them. In this case, the gravitational force between the 10 kg object and the 5 kg object would be the greatest when they are closest together (0 meters), as the force increases as the distance between them decreases.
The 10 kg object 1 meter from the 5 kg object would have the greatest force of gravitational attraction because the force of attraction between two objects is directly proportional to their masses and inversely proportional to the square of the distance between their centers. Therefore, the closer and more massive the objects are, the greater the force of attraction between them.
Gravitational force is a natural force of attraction exerted by one object on another object. It is responsible for the force that keeps planets in orbit around the sun and objects on Earth from floating out into space.
If one of the masses of the objects doubles, the force of attraction between them will also double. This is in accordance with Newton's law of universal gravitation, which states that the force of attraction between two objects is directly proportional to the product of their masses.
Mutual force of gravitational attraction.
The buoyant force of air is greatest when an object is fully submerged in the air. This is because the volume of air displaced by the object is at its maximum, creating the greatest upward force. The buoyant force decreases as the object is lifted out of the air, until it reaches a point where the object is no longer displacing enough air to experience a significant buoyant force.
The 10 kg object 1 meter from the 5 kg object would have the greatest force of gravitational attraction because the force of attraction between two objects is directly proportional to their masses and inversely proportional to the square of the distance between their centers. Therefore, the closer and more massive the objects are, the greater the force of attraction between them.
A black hole has the greatest force of gravitational attraction. Even light rays can't escape.
Gravitational force acts on all objects, meaning ALLmatter.
In solid state force of attraction are greatest
gravity
Gravitational force is a natural force of attraction exerted by one object on another object. It is responsible for the force that keeps planets in orbit around the sun and objects on Earth from floating out into space.
gravitational force
Objects with the greatest mass will have the greatest force of gravity attracting them to the surface of the earth. Gravitational attraction is based on the mass of an object and the distance between the two "attractors" involved. For things on the Earth's surface, more mass equates to greater gravitational attraction. It's a direct relationship.
The force exerted is dependent on the mass of the object.
Gravitational force exerts an attraction on objects.
-- Measure the force of attraction between the object and the earth. ("WEIGH" the object.)-- Divide the force by the acceleration of gravity.-- The answer is the mass of the object.
A black hole has the greatest force of gravitational attraction. Even light rays can't escape.