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answer this questions fully with clear handwriting.. do not copy answers from lther questions or people... must have similar given hints/answers
Problem II-B.3 (i) By deriving necessary formulation, determine the force exerted on a beam of electrons -Q) coulomb moving a
distance of a meters from the face of the coil through a ferromagnetic rod as illustrated in Fig. II-B.3(X) 90° Ferromagneti
Problem II-B.3 (i) By deriving necessary formulation, determine the force exerted on a beam of electrons -Q) coulomb moving at a velocity v meter/sec in a magnetic field. Assume that this magnetic field is induced by a current-carrying coil kept at a
distance of 'a meters from the face of the coil through a ferromagnetic rod as illustrated in Fig. II-B.3(X) 90° Ferromagnetic material of permeability, H Beam of charge Q coulomb I ampere Fig. II-B.3(N) Solution hints: See the Notes/Class-Lectures: Calculate the magnetic-field (B) induced due to a current-carrying loop of radius R Apply Lorentz relation as appropriate to find the current density (J) due to charge-flow Apply FBI left-hand rule to find the force vector (F on the beam-charge
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