KnowraBiot–Savart lawLinked fromLinked fromThe 15 pages that link to Biot–Savart law, each with the reason it gives.All 15Broader topic 1Related 8Compared with 6Magnetic fieldRelated: It gives the field produced by a current in a wire.Maxwell's equationsCompared with: It applies to steady-current settings rather than the full time-dependent field framework.Coulomb's lawCompared with: It concerns magnetic fields from currents rather than forces between stationary charges.Lorentz forceCompared with: It predicts a field generated by currents rather than the force that field exerts on a charge.Magnetic momentRelated: It connects the current distribution in a loop to the field represented by its dipole moment.Magnetic dipoleRelated: It derives the field of a current loop, a standard physical realization of a dipole.Ampère's circuital lawCompared with: It gives the field directly, whereas Ampère’s law relates circulation to enclosed sources.André-Marie AmpèreCompared with: It describes current-generated magnetic fields through a different formulation from Ampère’s force-based theory.MagnetostaticsRelated: It calculates the field from a specified steady current distribution.Lenz's lawCompared with: It predicts a current's field, while Lenz's law determines the direction of an induced current.Magnetic vector potentialRelated: Integrating its field relation can yield the vector potential of a current distribution.Ampère's force lawRelated: Its field for one conductor can be combined with the magnetic force on another.Right-hand ruleRelated: It computes the field whose direction the mnemonic predicts.Vacuum permeabilityRelated: Its vacuum expression includes μ₀ as the factor scaling current-generated fields.Jean-Baptiste BiotBroader topic: Biot and Savart formulated this relation from experiments on current-generated magnetism.