How does the magnitude of the non contact force on the two bodies depends on the distance of separation between them?

How does the magnitude of the non contact force on the two bodies depends on the distance of separation between them?

The magnitude of non-contact forces acting on two bodies depends on the distance of separation between them. The magnitude of force decreases with an increase in separation and increases as the separation decreases. It varies inversely as the square of the distance of separation.

How does the distance of separation between two bodies?

As the distance of separation increases, the magnitude of non-contact force decreases. Also, as the distance of separation decreases, the magnitude of non-contact force increases.

How does the distance of separation?

A separation distance is the amount of intervening area that determines whether Source Features of an Element should be grouped as part of the same (complex) Element Occurrence (EO), or should be considered as discrete Element Occurrences.

On what factor does the magnitude of non-contact force depends?

The magnitude of Non-Contact forces depends on the distance of separation between them. It decreases with the increase in separation and increases with the decrease in separation.

Which non contact force depends on mass?

Gravity, the force of attraction that exists among all bodies that have mass. The force exerted on each body by the other through weight is proportional to the mass of the first body times the mass of the second body divided by the square of the distance between them.

On what factors does the magnitude of force depends?

When the conductor is held perpendicular to the magnetic field, it experiences maximum force. Magnitude of this force depends on strength of magnetic field, orientation of the conductor, length of the conductor.

What factors affect the strength of non contact forces?

How does the mass of two objects attracted by gravity affect the strength of gravitational pull between them? The greater the mass and the closer they are, the better the gravitational force.

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