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Lorentz Force Calculator

Result

0.020000N

Result: 0.020000 N

The magnetic force on a moving charge is charge times velocity times field strength. It assumes the charge moves perpendicular to the field, where the force is largest; along the field lines it is zero. This is the magnetic half of the Lorentz force — add qE separately if an electric field is present.

The numbers at a glance

Held fixed: Electric charge 0.001000 C, Velocity perpendicular to the field 100.000 m/s.

Magnetic field strength (T)Result (N)
0.00000.000000
0.05000.005000
0.10000.010000
0.15000.015000
0.2000Your value0.020000
0.25000.025000
0.30000.030000
0.35000.035000
0.40000.040000

Worked examples

Case 1
Electric charge
0.001C
Velocity perpendicular to the field
100m/s
Magnetic field strength
0.2T

0.020000N

Open with these values
Case 2
Electric charge
2C
Velocity perpendicular to the field
3m/s
Magnetic field strength
4T

24.000000N

Open with these values
Case 3
Electric charge
1.6e-19C
Velocity perpendicular to the field
1000000m/s
Magnetic field strength
0.5T

0.000000N

Open with these values

How it's calculated

F = q × v × B

  1. StepEnter the charge in coulombs — an electron carries 1.6e-19 C.
  2. StepEnter how fast it moves across the field, in metres per second.
  3. StepEnter the flux density in tesla.
  4. ResultRead the force in newtons; it acts sideways, never along the motion.

Reference table

Charge, velocity, fieldSettingForce (N)
0.001, 100, 0.2Charged dust grain in a weak field0.02
0.002, 5000, 0.05Fast ion beam, weak field0.5
1, 1, 1One coulomb, one metre per second, one tesla1
0.5, 200, 0.1Half a coulomb across a small magnet10
2, 3, 4Textbook whole numbers24

Questions

How do I calculate the Lorentz force?

Multiply the charge by the velocity and by the magnetic field strength: F = q × v × B, valid when the velocity is perpendicular to the field. Use coulombs, metres per second and tesla to get the force in newtons. An electron at 1,000,000 m/s in a 0.5 T field feels 8e-14 N.

What is the Lorentz force?

It is the force a magnetic field exerts on a moving electric charge. It makes charged particles curve in a field, drives electric motors and bends beams in particle accelerators. The magnetic part is measured in newtons.

Why must the velocity be perpendicular to the field?

The full magnetic force is F = q × v × B × sin θ, where θ is the angle between velocity and field. It is largest when the motion is perpendicular and zero when the charge travels along the field lines. This calculator assumes perpendicular motion and therefore reports the maximum.

Does this include the electric force?

No. The complete Lorentz force is F = q(E + v × B), combining an electric term qE and a magnetic term qv × B, and only the magnetic part is computed here. If an electric field is also present, add qE separately.

Why does the result show as zero for an electron?

Elementary charges are around 1.6e-19 C, so the forces land near 1e-14 N — far below the six decimal places this page can display. The calculation itself is exact; only the readout runs out of digits.

Sources and last check

  1. en.wikipedia.org

Information, not professional advice.