Gravitational attractive force is the natural phenomenon where objects with mass are drawn towards each other. This force is determined by the masses of the objects and the distance between them, as described by Newton's law of universal gravitation. It plays a key role in keeping celestial bodies like planets in orbit around stars.
Gravitational force is always attractive, meaning that it always pulls objects towards each other due to their mass.
No, the gravitational force is not negative. It is always positive and attractive, meaning it pulls objects towards each other.
Gravitational force and magnetic force both act at a distance without direct contact. They both follow an inverse square law, meaning the strength decreases with distance squared. However, gravitational force is always attractive between masses, while magnetic force can be attractive or repulsive between charges.
The electric force is stronger than the gravitational force because electric charges can be positive or negative, allowing for attractive and repulsive interactions, while gravity is always attractive. Additionally, the strength of the electric force is determined by the charge of the particles involved, which can be much larger than the masses involved in gravitational interactions.
Gravitational force is the attractive force between two objects with mass. It is responsible for holding planets in orbit around the sun and objects on the Earth's surface. The force is determined by the masses of the objects and the distance between them.
Gravitational force.
Gravitational force is always attractive, meaning that it always pulls objects towards each other due to their mass.
The gravitational force is always attractive.
No, the gravitational force is not negative. It is always positive and attractive, meaning it pulls objects towards each other.
A black hole has the greatest force of gravitational attraction. Even light rays can't escape.
Gravitational force and magnetic force both act at a distance without direct contact. They both follow an inverse square law, meaning the strength decreases with distance squared. However, gravitational force is always attractive between masses, while magnetic force can be attractive or repulsive between charges.
The electric force is stronger than the gravitational force because electric charges can be positive or negative, allowing for attractive and repulsive interactions, while gravity is always attractive. Additionally, the strength of the electric force is determined by the charge of the particles involved, which can be much larger than the masses involved in gravitational interactions.
ATTRACTIVE FORCE is when you go to a casino and you have no change and you need to go to a change machine GRAVATATIONAL FORCE is when you go to blackpool and you dont go on the big one
Probably newton...Since force is newton.& if its not "newton" then its momentum.
Gravitational force is the attractive force between two objects with mass. It is responsible for holding planets in orbit around the sun and objects on the Earth's surface. The force is determined by the masses of the objects and the distance between them.
Gravitational force is a natural phenomenon where objects with mass are attracted toward one another. It is always attractive, meaning it pulls objects together. The strength of gravitational force depends on the masses of the objects and the distance between them, following the inverse square law.
No. Gravitational force is the attractive force that objects of mass have on other matter (including light). Pushing a grocery cart is an example of force, just not a gravitational force. Now, dropping a grocery cart would be an example of gravitational force, since it is the Earth's mass that is attracting it towards the ground.