Physics

Coulomb’s Law Calculator

Calculate the electrostatic force between two charges.


Coulomb’s Law Calculator

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Calculates the electrostatic force between two point charges — the electrical counterpart to gravitational force between two masses.

How it works

Coulomb’s constant is multiplied by both charges and divided by the square of the distance between them.

What this does not include

This treats both charges as point charges — real extended objects with distributed charge require more advanced methods for precise force calculations.

How to use this calculator

  1. Enter both charges and the distance between them.

A worked example

Charges of 1×10⁻⁶ C and 2×10⁻⁶ C, 0.1 m apart: force = 1.798 N.

Charges of 3×10⁻⁶ C each, only 0.05 m apart: force = 32.364 N — much larger, since halving the distance roughly quadruples the force.

What the variables mean

Variable Meaning
q1, q2 The two point charges, in coulombs
Distance Separation between the charges, in meters

Edge cases worth knowing

Force falls off with the square of distance, not linearly. The second example shows this directly: halving the distance from 0.1 m to 0.05 m doesn’t double the force, it roughly quadruples it.

Zero distance makes the force infinite, which has no physical meaning — the calculator declines to show a result rather than an undefined value.

Frequently asked questions

Why does the force decrease so quickly with distance?

Because distance is squared in the denominator — doubling the distance reduces the force to one quarter of its original strength, the same inverse-square pattern gravity follows.

What does a negative force result mean?

If one charge is positive and the other negative, the calculated force is attractive rather than repulsive — the formula’s sign convention reflects that.

How is this similar to gravitational force?

Both follow the same inverse-square-law shape, just with a different constant and different property of the objects (charge instead of mass) driving the force.

Sources

  1. Coulomb's constant (8.99×10⁹ N·m²/C²) — standard value used in introductory and engineering physics
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Written by

R. Solano

Physics writer

R. Solano writes the physics calculators, spanning mechanics, electricity, optics and thermodynamics. Each page names the physical model it uses and the conditions under which that model holds — ideal gas, no air resistance, small-angle approximation — because a physics result without its assumptions is a number without a meaning. Formulas are given in symbols first, then in the calculator.

Reviewed by

V. Kowalski

Calculator reviewer — physics and engineering

V. Kowalski reviews the physics and engineering calculators, checking that each page states the physical model it assumes and that the stated model matches the formula actually implemented. Review covers unit consistency throughout a calculation and whether approximations are flagged where the underlying physics is more complicated than the formula suggests.

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