Ampère's law of force between currents

GPTKB entity

Properties (48)
Predicate Object
gptkbp:instanceOf physical law
gptkbp:appliesTo long straight conductors
gptkbp:description the force between two parallel currents
gptkbp:evaluates the direction of magnetic forces
https://www.w3.org/2000/01/rdf-schema#label Ampère's law of force between currents
gptkbp:is_a_platform_for electromagnetic theory
the design of electric generators
gptkbp:is_a_subject_of circuit theory
plasma physics
the study of electric fields
the_study_of_magnetostatics
gptkbp:is_a_symbol_of F/L = (μ₀/2π) * (I₁ * I₂)/d
gptkbp:is_characterized_by André-Marie Ampère
gptkbp:is_essential_for understanding electromagnetic waves
the field of robotics
the development of renewable energy technologies
the study of magnetic fields
the development of electromagnets
the functioning of electric vehicles
understanding magnetic interactions
gptkbp:is_involved_in the analysis of power systems
the operation of solenoids
gptkbp:is_part_of Maxwell's_equations
gptkbp:is_studied_in current-carrying conductors
gptkbp:is_used_in induction heating
calculating magnetic forces
designing transformers
the analysis of circuit components
the design of electric circuits
the interaction of magnetic fields with currents.
the operation of electric motors
the study of superconductivity
gptkbp:isUsedFor Biot-Savart law
gptkbp:legal_principle magnetic levitation
gptkbp:previousName André-Marie Ampère
gptkbp:publishedBy 1820
gptkbp:related_to Lorentz force law
electromagnetism
the behavior of charged particles
the behavior of magnetic materials
the concept of magnetic flux
Faraday's_law_of_induction
gptkbp:state the force per unit length between two parallel conductors is proportional to the product of the currents
gptkbp:suitableFor electrical engineering
wireless communication technology
medical imaging technologies
the field of telecommunications
gptkbp:was_a_factor_in the operation of magnetic switches