The known forces of nature can be divided into four classes, viz., gravity, electromagnetism, weak nuclear force and strong nuclear force. With reference to them, which one of the following statements is not correct?

Updated 11 Apr 2026

Contents13
UPSC Prelims GS2013Science and Technology
  1. AGravity is the strongest of the four
  2. BElectromagnetism acts only on particles with an electric charge
  3. CWeak nuclear force causes radioactivity
  4. DStrong nuclear force holds protons and neutrons inside the nucleus of an atom
Show answer

Answer: (A) Gravity is the strongest of the four

The question asks which statement is NOT correct.

Option (a) says 'Gravity is the strongest' — this is WRONG, and therefore the correct answer.

Gravity is actually the WEAKEST of the four fundamental forces — it is about 10^36 times weaker than the strong nuclear force!

A simple demonstration: when you rub a comb on your shirt and it lifts a piece of paper off a desk, the electromagnetic force of that tiny comb is overcoming the gravitational pull of the entire Earth on that paper.

The other three statements are correct:

  • (b) Electromagnetism acts only on electrically charged particles.

  • (c) Weak nuclear force is responsible for radioactive decay (beta decay).

  • (d) Strong nuclear force is what holds protons and neutrons together inside the nucleus, overcoming the electromagnetic repulsion between positively charged protons.

Why this was asked

Gravity is actually the weakest of the four fundamental forces, about 10^36 times weaker than the strong nuclear force, despite being the most familiar to us.

This question tests basic physics knowledge that connects to nuclear energy topics, since understanding nuclear forces is essential for comprehending how nuclear reactors and atomic structure work.

Four Fundamental Forces of Nature

Science And Technology gravity electromagnetism weak nuclear force strong nuclear force

Four Fundamental Forces: Strength Hierarchy & UPSC Traps

Must know

Gravity is the weakest force, not strongest — 10^36 times weaker than strong nuclear force

Strong nuclear force is strongest, holds nucleus together despite proton repulsion

Electromagnetic force acts only on charged particles, second strongest

Weak nuclear force causes radioactive decay, third strongest

Why This Matters

The fundamental forces govern all interactions in the universe. UPSC frequently tests their relative strengths and specific roles — the biggest trap is assuming gravity is strong because we experience it daily.

Force Comparison

Force

Relative Strength

Range

Acts On

Key Role

Strong Nuclear

1 (strongest)

10^-15 m

Quarks, nucleons

Holds nucleus together

Electromagnetic

10^-2

Infinite

Charged particles only

Chemical bonds, light

Weak Nuclear

10^-13

10^-18 m

All particles

Radioactive decay

Gravity

10^-36 (weakest)

Infinite

All mass/energy

Planetary motion, tides

Daily Life Examples

Comb lifting paper: Electromagnetic force of tiny comb overcomes Earth's entire gravitational pull

Nuclear power: Strong force binding energy released when nucleus splits

Radio waves: Electromagnetic force creates and propagates all forms of light

Carbon-14 dating: Weak force causes radioactive decay used in archaeology

Question Analysis

This PYQ tests the strength hierarchy misconception. Statement A claims gravity is strongest — completely wrong since gravity is the weakest force. The other three statements correctly describe electromagnetic selectivity, weak force radioactivity, and strong force nuclear binding.

Exam traps

Trap: Assuming gravity is strong because we feel it daily — it's actually the weakest by far

Trap: Confusing strong nuclear force with weak nuclear force roles

Trap: Thinking electromagnetic force acts on all particles — it acts only on charged particles

Trap: Forgetting that weak force, despite its name, is stronger than gravity

Nuclear Forces: Strong vs Weak

Science And Technology strong nuclear force weak nuclear force nucleus radioactivity

Nuclear Forces: How They Hold Atoms Together & Cause Decay

Must know

Strong nuclear force binds protons and neutrons in nucleus, overcomes electromagnetic repulsion

Weak nuclear force causes radioactive decay, converts neutrons to protons in beta decay

Good to know

Strong force range: 10^-15 m, weak force range: 10^-18 m — both very short

The Nuclear Challenge

Inside the nucleus, positively charged protons should repel each other violently due to electromagnetic force. The strong nuclear force overcomes this repulsion at extremely short distances, binding protons and neutrons together.

How Strong Force Works

%%{init: {"flowchart": {"wrappingWidth": 460}}}%%
flowchart TD
  s1["`**Protons Repel**
Electromagnetic force pushes positive charges apart`"]
  s2["`**Strong Force Activates**
At distances < 10^-15 m, strong force dominates`"]
  s3["`**Quarks Exchange Gluons**
Force carriers bind quarks within protons/neutrons`"]
  s4["`**Nucleus Stays Bound**
Strong force wins over electromagnetic repulsion`"]
  s1 --> s2
  s2 --> s3
  s3 --> s4

Strong vs Weak Nuclear Forces

Aspect

Strong Nuclear Force

Weak Nuclear Force

Primary Role

Binds nucleus together

Causes radioactive decay

Typical Process

Holds protons + neutrons

Beta decay (n → p + e + ν)

Force Strength

Strongest of all four

10^11 times weaker than strong

Range

~10^-15 m (nuclear size)

~10^-18 m (much shorter)

Force Carriers

Gluons

W and Z bosons

UPSC Example

Why nucleus doesn't fly apart

Why Carbon-14 decays to Nitrogen-14

Exam traps

Trap: Mixing up which force does what — strong binds, weak decays

Trap: Thinking weak force is weaker than gravity — it's actually 10^23 times stronger than gravity

Trap: Assuming nuclear forces have long range like gravity/electromagnetic — both are extremely short-range

Electromagnetic Force & Charged Particles

Science And Technology electromagnetism electric charge

Electromagnetic Force: Why It Only Acts on Charged Particles

Must know

Acts only on electrically charged particles — neutral particles feel no electromagnetic force

Second strongest force, creates chemical bonds and all forms of light

Good to know

Force carrier is photon, has infinite range like gravity

Charge Selectivity

Unlike gravity (which acts on all mass) and nuclear forces (which act on specific particles), electromagnetic force is highly selective — it only affects particles with electric charge: electrons (-), protons (+), and ions.

What Electromagnetic Force Creates

Chemical bonds: Electrons attracted to protons form atoms and molecules

Light and radio waves: Accelerating charges create electromagnetic radiation

Electricity and magnetism: Moving charges create magnetic fields, changing fields create electric fields

Friction and contact forces: Electromagnetic repulsion between electron clouds

All everyday forces except gravity are ultimately electromagnetic

Particles & Electromagnetic Force

Particle Type

Electric Charge

Feels EM Force?

Example Interaction

Electron

Negative (-e)

Yes

Attracted to protons, repelled by other electrons

Proton

Positive (+e)

Yes

Attracted to electrons, repelled by other protons

Neutron

Zero (neutral)

No

Passes through matter easily, no EM interaction

Photon

Zero (neutral)

No*

*Carries EM force but has no charge itself

Neutrino

Zero (neutral)

No

Passes through Earth without EM interaction

Exam traps

Trap: Assuming EM force acts on all particles — neutrons and neutrinos are immune

Trap: Confusing photons (EM force carriers) with charged particles — photons have zero charge

Trap: Thinking gravity acts only on charged particles — gravity acts on all mass/energy