D.3.3—Crossed electric and magnetic fields
- Syllabus
- First assessment 2025
- Objective
- —
- Level
- SL
Separate the two forces
With perpendicular uniform electric and magnetic fields, a charged particle can experience an electric force FE=qE parallel to the electric field and a magnetic force FB=qvB perpendicular to both velocity and magnetic field. For the correct geometry, these forces can point in opposite directions.
Find the undeflected speed
For the geometry in which the two forces oppose, a particle travels straight when their magnitudes are equal. Charge magnitude and mass do not determine this selected speed.
|q|E=|q|vB\quad\Rightarrow\quad v=\frac{E}{B}
Worked example — crossed-field selector
For v=5.9×106ms−1 and B=42mT=0.042T, the balancing field is E=vB=(5.9×106)(0.042)=2.5×105Vm−1. Across plates 0.10m apart, V=Ed=2.5×104V.
Check the geometry
The cancellation condition depends on velocity being perpendicular to both fields and on the electric and magnetic force directions being opposite. If the particle is deflected, compare the vector forces rather than applying E/B blindly.
Common trap
Do not use the electric-field direction alone to predict the path, and do not insert the particle’s mass into v=E/B. This is a force-balance condition.
Questions calculate B or compare the undeflected speeds of particles in crossed fields.
Calculate / What is
Set |q|E=|q|vB only after checking the perpendicular geometry, then use v=E/B for an undeflected particle.
Using v=E/B without verifying force directions, or forgetting that q cancels in the balance.
Representative question
A proton enters a region where electric and magnetic fields are perpendicular to each other. The initial velocity v of the proton is perpendicular to both fields. The path of the proton is not deflected in the fields.
The proton is replaced by an alpha particle that is also not deflected by the fields. What is the velocity of the alpha particle?
2v
v
2 v
4 v
B
D.3 is secure when you can keep electric and magnetic force rules separate and then combine them deliberately.