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The amount of electric force between two objects is determined by the magnitude of the charges on the objects and the distance between them. The force increases with the magnitude of the charges and decreases with the square of the distance separating the objects.
The electric force between two objects is directly proportional to the amount of charge on each object. As the amount of charge increases, the electric force between the objects also increases. Conversely, if the amount of charge decreases, the electric force between the objects will decrease.
The electric force between two objects is directly proportional to the amount of charge on the objects. The force increases as the charge on the objects increases. Additionally, the electric force is inversely proportional to the square of the distance between the objects. The force decreases as the distance between the objects increases.
The electric force between two objects depends on the amount of charge on each object and the distance between them. The force is directly proportional to the product of the charges and inversely proportional to the square of the distance between the objects.
False. The electric force between two objects is determined by the amount of charge on each object, as well as the distance between them. If the electric charge on two objects is decreased, the electric force between them will also decrease.
Increasing the distance between the objects, or decreasing the amount of charge on the objects will reduce the electric force between two positively charged objects. Adding negatively charged objects nearby can also reduce the electric force by attracting the positive charges.
The two factors are the amount of mass an object has and the distance between the two objects.
Gravity is an attractive forces between any 2 objects. The strength of the attraction is proportional to the mass of the two objects and is inversely proportional to the square of the distance between the objects. That is to say that gravity is stronger between larger objects and gets weaker as the 2 objects get farther apart.
If the charge on the object is double than the force between them is double
1st. how hot is the heat source 2nd.the distance between the object and the heat source 3rd.whether if the object is a good conductor of heat (tht's not the answer. u wanted i guess)
The amount of current varies between 1 mA and 3mA. The gender and age determine the minimum amount and current.
No, the size of an object does not determine the amount of gravitational pull it exerts on other objects. Gravitational force depends on the mass of the objects involved and the distance between them, as described by Newton's law of universal gravitation.