If the distance between them is decreasing, then the mutual gravitational
attraction is increasing. They don't necessarily have to be accelerating. Just
moving steadily would do it, as long as the separation distance is decreasing.
The gravitational attraction between two objects increases as the mass of one or both objects increases. This is because gravitational force is directly proportional to the mass of the objects. Therefore, the more massive the objects are, the stronger the gravitational attraction between them.
When mass decreases, gravitational force also decreases. The gravitational force between two objects is directly proportional to the product of their masses. So, a decrease in mass will result in a reduction in the gravitational attraction between the objects.
The gravitational force between two objects increases as their masses increase. This is because gravitational force is directly proportional to the product of the masses of the two objects. As the masses increase, the force of attraction between them also increases.
If the masses of two objects increase, their gravitational attraction towards each other will also increase. This will result in a stronger gravitational force between the two objects. Additionally, the force required to move or accelerate the objects will increase as their masses increase.
The force between the objects would increase as they move closer together due to gravity. Gravity acts as an attractive force between two objects, pulling them toward each other. As they accelerate towards each other, the force of gravity between them would strengthen according to the inverse square law.
If the distance between them is decreasing, then the mutual gravitational attraction is increasing. They don't necessarily have to be accelerating. Just moving steadily would do it, as long as the separation distance is decreasing.
The gravitational attraction between two objects increases as the mass of one or both objects increases. This is because gravitational force is directly proportional to the mass of the objects. Therefore, the more massive the objects are, the stronger the gravitational attraction between them.
Gravity force will be reduced by a factor of 4.
When mass decreases, gravitational force also decreases. The gravitational force between two objects is directly proportional to the product of their masses. So, a decrease in mass will result in a reduction in the gravitational attraction between the objects.
The gravitational force between two objects increases as their masses increase. This is because gravitational force is directly proportional to the product of the masses of the two objects. As the masses increase, the force of attraction between them also increases.
It decreases as the square of the distance.
the gravitational force between them decreases.
The heavier object becomes the dominant one. They will not come together at the same speed, the lighter object will move faster.
As space objects move farther apart, the gravitational force between them weakens. Gravity follows an inverse square law, meaning it decreases with the square of the distance between the objects. This results in weaker gravitational attraction as the objects move away from each other.
the force of attraction get weaker the more the distance grows between magnetic fields
If the masses of two objects increase, their gravitational attraction towards each other will also increase. This will result in a stronger gravitational force between the two objects. Additionally, the force required to move or accelerate the objects will increase as their masses increase.
The force between the objects would increase as they move closer together due to gravity. Gravity acts as an attractive force between two objects, pulling them toward each other. As they accelerate towards each other, the force of gravity between them would strengthen according to the inverse square law.