INGENIA

EMG-13

Coulomb's law

F = k q1 q2 / r², k = 1/(4πε0). Two point charges in vacuum.

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ElectrostaticsCoulomb

Governing equation

F=14πε0q1q2r2F=\dfrac{1}{4\pi\varepsilon_0}\dfrac{q_1 q_2}{r^2}

where

q_1
Charge 1 (µC)
q_2
Charge 2 (µC)
r
Separation (m)
F
Force (N)

Lecture brief

Historical brief

Coulomb, Gauss, Ampère, Faraday and Maxwell (1861–65) unified charge, current and light. The lab computes fields, induction, Poynting flux and the electromagnetic wave in SI. This sheet (EMG-13 — Coulomb's law) is the form associated with Coulomb. Working symbols: q1q_1, q2q_2, rr \rightarrow FF. The field of a point charge is radial. Superposition holds in linear media.

Purpose

Purpose: compute FF from q1q_1, q2q_2, rr in Electromagnetism via F=14πε0q1q2r2F=\dfrac{1}{4\pi\varepsilon_0}\dfrac{q_1 q_2}{r^2} F = k q1 q2 / r², k = 1/(4πε0). Two point charges in vacuum. Use it when a real electromagnetism question must be answered in SI before a code check.

Live realistic example

In symbols

Live case. Given q1=2.000μCq_1 = 2.000\,\mathrm{\mu C}, q2=3.000μCq_2 = -3.000\,\mathrm{\mu C}, r=0.500mr = 0.500\,\mathrm{m}, the governing relation F=14πε0q1q2r2F=\dfrac{1}{4\pi\varepsilon_0}\dfrac{q_1 q_2}{r^2} yields F=0.216NF = -0.216\,\mathrm{N}. Two charges, a force arrow, a 1/r² fade. Move a slider: the numbers are this situation, not a canned story.

Calculator

Inputs

Outputs

  • Force F-0.216 N
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Narration of this film

Two charges, a force arrow, a 1/r² fade.

The field of a point charge is radial. Superposition holds in linear media.

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Watch on YouTube