All forces we see in nature — from falling apples to holding atoms together, from moving electrons to radioactive decay — trace back to four fundamental forces.

The four fundamental forces

Force Range Relative strength Carrier
Gravity Infinite 10⁻³⁹ (weakest) Graviton (hypothesized)
Electromagnetism Infinite 10⁻² Photon
Strong nuclear ~10⁻¹⁵ m 1 (strongest) Gluon
Weak nuclear ~10⁻¹⁸ m 10⁻⁶ W, Z bosons

"Strength" is typically defined by comparing forces between two protons.

Gravity

Electromagnetism

Note: when two objects "touch", at microscopic level their electron clouds repel. All contact forces are electromagnetic.

Strong nuclear

Without it: protons would repel electromagnetically — nuclei couldn't exist.

Weak nuclear

Why only four?

The Standard Model of particle physics (~1970) explains these four with great success. Gravity is not yet fully integrated with the Standard Model — one of the greatest unsolved problems (theory of everything, quantum gravity).

How each force dominates at its scale

Particle level: strong and weak dominate Atomic level: electromagnetism dominates Molecular / matter level: electromagnetism dominates Human scale: electromagnetism (contact) + gravity (weight) Planetary scale: gravity dominates Galactic / cosmic scale: gravity alone

What about "non-fundamental" forces?

Friction, normal, rope tension, spring, drag — all originate from electromagnetism at the microscopic level. We call them "forces" in everyday physics, but from a fundamental view they're derived.

What you should be able to do

Preview of §6.7

Worked problems applying Chapter 6 tools to real scenarios.

📚 See also: Halliday Vol 1, Ch 6, §6.7.

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