Skip to content
II. Short Answer Questions · Q1

Q.Explain how the definition of work in physics is different from general perception.

Tamil Nadu DgeTextbookSubjectiveImportance★★★★★
3% · 2/59 Questions
✓ Free question

Step 1. In general (non-physics) usage, "work" refers to almost any physical or mental effort -- studying for an exam, or pushing hard against an immovable wall until exhausted, would both be called "work" in daily speech.

Step 2. Physics defines work precisely as W=F⃗⋅dr⃗=F drcos⁡θW=\vec F\cdot d\vec r = F\,dr\cos\theta: work is done by a force only if that force actually produces a displacement of the point it acts on, and only the component of the force along the direction of that displacement contributes.

Step 3. This produces results that contradict everyday intuition: pushing against an immovable wall (zero displacement) does zero work in physics, however tiring it feels; carrying a heavy bag while walking horizontally does zero work against gravity, since gravity acts vertically, perpendicular to the horizontal displacement.

Step 4. Physics work is also a signed scalar -- it can be positive (force helps the motion), negative (force opposes the motion, e.g. friction decelerating a sliding block), or zero -- whereas everyday "work" is never thought of as negative.

✓Final answer

Physics work requires an actual displacement and only counts the force component along it (W=F drcos⁡θW=F\,dr\cos\theta), so it can be zero (no displacement, or force perpendicular to displacement) or even negative -- unlike the everyday sense, where any effort counts as "work" regardless of outcome.

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.