Question:

Three charges of equal magnitude $q$ is placed at the vertices of an equilateral triangle of side $l$. The force on a charge $Q$ placed at the centroid of the triangle is

Updated On: Jul 7, 2022
  • $\frac{3\,Qq}{4\pi\varepsilon_{0}l^{2}}$
  • $\frac{2\,Qq}{4\pi\varepsilon_{0}l^{2}}$
  • $\frac{Qq}{2\pi\varepsilon_{0}l^{2}}$
  • zero
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The Correct Option is D

Solution and Explanation

As shown in figure draw $AD \bot BC$. $\therefore AD=AB\,cos30^{\circ}=\frac{l\sqrt{3}}{2}$ Distance $AO$ of the centroid $O$ from A $=\frac{2}{3}AD=\frac{2l}{3} \frac{\sqrt{3}}{2}=\frac{l}{\sqrt{3}}$
$\therefore$ Force on $Q$ at $O$ due to charge $q_1 = q$ at $A$, $\vec{F}_{1}=\frac{1}{4\pi\varepsilon_{0}} \frac{Qq}{\left(l / \sqrt{3}\right)^{2}}=\frac{3Qq}{4\pi\varepsilon_{0}l^{2}}$, along $AO$ Similarly, force on $O$ due to charge $q_{2} = q$ at $B$ $\vec{F}_{2}=\frac{3Qq}{4\pi\varepsilon_{0}l^{2}}$, along $BO$ and force on $Q$ due to charge $q_{3}= q$ at $C$ $\vec{F}_{3}=\frac{3Qq}{4\pi\varepsilon_{0}l^{2}}$, along $CO$ Angle between forces $F_{2}$ and $F_{3}=120^{\circ}$ By parallelogram law, resultant of $\vec{F}_{2}$ and $\vec{F}_{2}=\frac{3Qq}{4\pi\varepsilon_{0}l^{2}}$, along $OA$ $\therefore$ Total force on $Q=\frac{3Qq}{4\pi\varepsilon_{0}l^{2}}-\frac{3Qq}{4\pi\varepsilon_{0}l^{2}}=0$
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Concepts Used:

Electric Charge

What is Electric Charge

It is the property of subatomic particles that experiences a force when put in an electric and magnetic field. It is are of two types: Positive and Negative. It commonly carried by charge carriers protons and electrons.

Properties of Electric Charge

Various properties of charge include the following :-

  • Additivity of Electric Charge
  • Conservation of Electric Charge
  • Quantization of Electric Charge

Types of electric charge

Two kinds of electric charges are there :-

Negative Charge - When an object has a negative charge it means that it has more electrons than protons.

Positive Charge - When an object has a positive charge it means that it has more protons than electrons.

When there is an identical number of positive and negative charges, the negative and positive charges would cancel out each other and the object would become neutral.