Magnetic Forces & Charged Particle Trajectories: Master Notes
Chapter Overview
Magnetic forces deflect moving charges without altering their kinetic energy. In IIT-JEE (Advanced) and Olympiads, prime questions test helical trajectory pitch and radius, cycloidal paths in crossed
1. The Lorentz Force & Trajectory Classifications
Fundamental Principle: The magnetic force
is always perpendicular to velocity . Therefore: (Kinetic energy and speed remain strictly constant under pure magnetic fields).
1.1 Trajectory Regimes in Uniform
Charged particle trajectory in magnetic field B: Radius R = mv / (qB) and helical pitch p = 2pi * m * v_parallel / (qB).
| Initial Velocity Condition | Resulting Trajectory | Key Formulas |
|---|---|---|
| Straight Line | Unaltered velocity | |
| Circle in plane | Radius | |
| Helix | Radius |
2. Motion in Crossed and Fields ( )
2.1 Velocity Selector
When
2.2 Cycloidal Motion (Released from Rest at Origin in , )
- Maximum height attained along
: - Maximum speed:
3. Magnetic Force on Current-Carrying Wires
Where
- Closed Loop in Uniform
: Since .
4. Authentic Previous Years Questions (PYQs)
PYQ 1: JEE Advanced 2021 (Paper 1) — Cycloid Height in Crossed Fields
Question:
A particle of mass
Step-by-Step Solution:
Work-Energy Theorem: Since only the electric field does work:
At Maximum Height
: The vertical velocity component becomes zero ( ). Therefore, the total velocity is purely horizontal: . In the cycloidal trajectory frame, the drift velocity is , and at the apex the speed is twice the drift speed: Equating with Work-Energy (1):
PYQ 2: JEE Advanced 2019 — Force on Semicircular Wire
Question:
A rigid wire carrying current
Step-by-Step Solution:
Using the effective length vector concept:
5. High-Yield Formula Sheet
| Entity | Formula | Notes |
|---|---|---|
| Cyclotron Radius | Perpendicular motion | |
| Helix Pitch | Distance along | |
| Force on Arbitrary Wire | End-to-end vector | |
| Force Between Wires | Parallel currents attract | |
| Magnetic Work | Speed is always invariant |