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ContentMagnetic Force in Moving Metal Bar
Magnetic Force in Moving Metal Bar
By pulling a metal bar through a magnetic field at constant speed π£, electron charges inside the metal bar are moved by magnetic force πΉ=(-π) π£Γ π΅to build up on one side. The electron current flows towards bottom until net force acting on electron is balanced by charge build up, that is πΉnet=0.
Electricity in Moving Metal Bar
By connecting a metal bar to a closed circuit during pulling the metal bar through a magnetic field at constant speed π£, electron charges inside the metal bar are moved by magnetic force along one direction. Since the metal bar is connected to a closed circuit, the current inside the metal bar flows around the closed circuit. The work done by moving the metal bar is
Electric and Magnetic ForcesThe electric and magnetic forces areπΉ=π πΈ1=π π£Γ π΅
The electric field due to 1 on 2 is πΈ1= 14ππ0 π1π2 π The electric force on 2 due to 1 is πΉ21,π=π2 πΈ1= 14ππ0 π2π1π2 πβπΉ21,π= 14ππ0 π2π2
The magnetic field due to 1 on 2 is π΅1= π04π π1π£1π2 π The magnetic force on 2 due to 1 is πΉ21,π=π2 π£2Γ π΅1=π2 π£2 π04π π1π£1π2 πβπΉ21,π= π04π π2π£2π2
The ratio of magnetic force over electric force is
πΉ21,ππΉ21,π= π04π π2π£2π2 14ππ0 π2π2 Since π0π0= 1π2β πΉ21,ππΉ21,π= π£2π2 Therefore πΉπβ€πΉπ Relativity of Electric and Magnetic Fields
Magnetic field measurement depends on frame of reference. The Lorentz factor πΎ=1β1βπ£2/π2>1 Theory of relativity is the speed of light in vacuum = constant π = 3Γ10^8m/s always constant in every references frame. Space and time warp to preserve the speed of light. That is length contraction πΏobserved=πΏ/πΎ, time dilation π‘observed=πΎ*π‘, mass increase πobserved=πΎ*π. Electric and magnetic field also adjust. Special relativity is wiggy. Since electric and magnetic fields are closely related, they are usually called electromagnetic field.
The observed electromagnetic field of a rapidly moving particle is
πΈ
Source and Referencehttps://www.youtube.com/watch?v=-gLzdhG0IiE&list=PLZ6kagz8q0bvxaUKCe2RRvU_h7wtNNxxi&index=20Β©sideway ID: 200101202 Last Updated: 1/12/2020 Revision: 0 Latest Updated Links
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