On the scale of things we can see, it's either gravitational or electrostatic.
On a much smaller scale, it could be either the strong or weak nuclear force.
The attraction between two objects is called force of attraction or gravitational force.
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 size of the electrostatic force of attraction between two objects is determined by the magnitude of the charges on the objects and the distance between the objects. The larger the charges and the smaller the distance between the objects, the stronger the electrostatic force of attraction will be.
The gravitational force between two objects is directly proportional to the product of their masses. Therefore, an increase in the mass of an object will result in a stronger gravitational force between that object and another object.
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.
gravity
The attraction between two objects is called force of attraction or gravitational force.
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 size of the electrostatic force of attraction between two objects is determined by the magnitude of the charges on the objects and the distance between the objects. The larger the charges and the smaller the distance between the objects, the stronger the electrostatic force of attraction will be.
The gravitational force between two objects is directly proportional to the product of their masses. Therefore, an increase in the mass of an object will result in a stronger gravitational force between that object and another object.
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.
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.
The force between two objects is directly proportional to the product of their masses. This is described by Newton's law of universal gravitation, which states that the force of attraction between two objects is determined by their masses and the distance between them. The greater the mass of the objects, the stronger the force of attraction between them.
Gravitational force and electromagnetic force can act on an object without having to physically touch it. Gravitational force is the attraction between two masses, while electromagnetic force is the force between electric charges or magnets.
The gravitational attraction between the two objects will be stronger if the object with more mass exerts a greater pull on the other object. The force of gravity is directly proportional to the mass of the objects, so an object with more mass will attract the other object with greater force.
The positively charged object will be attracted to the negatively charged object, as opposite charges attract each other. The force of attraction between the two objects will cause them to move towards each other until they come into contact or until the force is balanced by another factor.
Gravitational force is a measure of the attraction between two objects due to their mass and distance. This force pulls objects toward the center of mass of the larger object and follows the inverse square law, meaning it weakens with distance. The strength of this force is determined by the masses of the objects and the distance between them.