An electron moves through a uniform magnetic field B ⃗ \vec{B} B = B₀î + 2B₀ĵ T. At a particular instant, the velocity of the electron is V ⃗ \vec{V} V = 3î + 5ĵ m s⁻¹. If the magnetic force acting on the electron is F ⃗ \vec{F} F = 5e k̂ N, where e is the magnitude of charge of electron, then the value of B₀ i s ____ T.

Physics · Magnetic effect of current · motion of charge particle in magnetic field

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An electron moves through a uniform magnetic field B\vec{B}= B₀î + 2B₀ĵ T. At a particular instant, the velocity of the electron is V\vec{V}= 3î + 5ĵ m s⁻¹. If the magnetic force acting on the electron is F\vec{F}= 5e k̂ N, where e is the magnitude of charge of electron, then the value of B₀ is ____ T.