Paritian

Physics

Force on a Current-Carrying Wire Calculator

Force a magnetic field exerts on a wire carrying current, in total and per metre.

Results

Force 2.00000 N
Force 0.20394 kgf
Force 8.00000 N/m

What this tool does

This single equation is the reason electric motors turn and loudspeakers make sound: put a current in a field and the wire is pushed sideways. The force per metre is the figure that matters in busbar design, where a short-circuit current in a strong field can tear conductors off their supports.

Formula

F = B × I × L × sin θ

Variables

SymbolMeaningUnit
bMagnetic fieldT
iCurrentA
lLengthm
anAngle°
FForceN
FKForcekgf
FMForceN/m

Worked example

  • Magnetic field0.8 T
  • Current10 A
  • Length0.25 m
  • Angle90 °
  • Force2.00000 N
  • Force0.20394 kgf
  • Force8.00000 N/m

Limitations

  • The formula assumes ideal conditions: no friction losses, no air resistance and no efficiency losses unless you enter them.
  • Electrical installations are governed by national wiring rules. Cable sizing also depends on installation method, grouping, ambient temperature and protection devices, which this calculator does not evaluate.