Skip to content
III. Long Answer Questions · Q3

Q.Define 'electric field' and discuss its various aspects.

Puducherry TnboardTextbookSubjectiveImportance★★★★★
9% · 11/122 Questions
✓ Free question

Step 1. Definition. The electric field at a point P is the force per unit positive test charge q0q_0 placed there: E⃗=F⃗/q0\vec{E}=\vec{F}/q_0.

Step 2. Point-charge field. For a source charge qq, E⃗=14πε0qr2r^\vec{E}=\dfrac{1}{4\pi\varepsilon_0}\dfrac{q}{r^2}\hat{r}, directed away from qq if positive, toward qq if negative.

Step 3. Independence from test charge. The test charge q0q_0 is taken vanishingly small so it does not disturb the source; the field itself depends only on the source charge and location.

Step 4. Uniform vs non-uniform. A field is uniform if it has the same magnitude and direction everywhere in a region (e.g. between two oppositely charged infinite sheets); a point charge's field, changing in direction and magnitude from point to point, is non-uniform.

Step 5. Superposition. For several point charges, E⃗total=∑iE⃗i\vec{E}_{\text{total}}=\sum_i\vec{E}_i, the vector sum of each individual contribution.

Step 6. Continuous distributions. For extended charge, the object is divided into infinitesimal elements dqdq, each contributing dE⃗=k dq/r2 r^d\vec{E}=k\,dq/r^2\,\hat{r}, summed by integration.

✓Final answer

Electric field is the force per unit test charge, E⃗=kq/r2 r^\vec{E}=kq/r^2\,\hat{r} for a point charge, radiating from positive sources and converging on negative ones, combined by vector superposition for multiple charges and by integration for continuous distributions.

Unlock everything free for 14 days

  • Full step-by-step solutions
  • Concept-first explanations
  • Methods, shortcuts & mistakes
  • PYQ mapping + timed mock tests

Full access for 14 days. No credit card required.