Special Relativity Fundamentals: Master Notes
Chapter Overview
Special Relativity (SR) revises space, time, and momentum kinematics at speeds approaching the speed of light
1. Postulates of Special Relativity & Lorentz Factor ( )
- The Principle of Relativity: The laws of physics take the identical form in all inertial reference frames.
- Constancy of the Speed of Light: The speed of light in vacuum (
) is strictly constant for all observers regardless of the motion of the source or the observer.
Minkowski spacetime diagram with lightcone x = +-ct, worldlines, and relativistic gamma factor.
2. Space-Time Kinematics
2.1 Time Dilation (Moving Clocks Run Slow)
(where
2.2 Length Contraction (Moving Rods Measure Shorter)
(where
2.3 Relativistic Velocity Addition in 1D
If object
(Notice: If
3. Relativistic Dynamics & Energy-Momentum Invariant
::: theorem 🌟 The Energy-Momentum Invariant Triangle
- For massless particles (
, such as photons): . :::
4. Authentic Olympiad & Advanced PYQs
PYQ 1: INPhO Olympiad — Atmospheric Muon Decay Paradox
Question:
Cosmic ray muons are created at an altitude of
- In the Earth frame, find the lifetime
of the muon and the distance it travels before decaying. - In the muon's rest frame, explain how the muon reaches the ground despite living only
.
Step-by-Step Solution:
1. In the Earth Frame (Time Dilation):
Distance traveled before decay:
(Because of time dilation, a large fraction survive the 10 km journey to ground level!)
2. In the Muon Frame (Length Contraction): In the muon's own frame, the clock ticks normally (
). However, the 10 km atmosphere is rushing past at , so the atmosphere's height contracts: Distance atmosphere moves during muon lifetime:
(Both observers agree on the physical reality that muons reach the ground!)
PYQ 2: Advanced Olympiad Drill — Speed at Double Rest Mass Energy
Question:
Find the speed
Step-by-Step Solution:
- Total Energy:
- Equating with
: - Solving for
:
5. High-Yield Formula Sheet
| Entity | Formula | Notes |
|---|---|---|
| Lorentz Factor | ||
| Time Dilation | Moving clocks run slow | |
| Length Contraction | Along direction of motion | |
| Relativistic Velocity Addition | Speed of light | |
| Energy Invariant | Total vs rest mass energy |