A long cylinder of radius R carries a current with a free current density Jf(s) = Jf(s) 2 along its axis. The cylinder is a linear material with permeability µ, and the magnetic field is found to be B = ks? p. Find Jf(8).
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Q: A particle having mass m = 2.80E-4 kg carries a negative charge q= −1.70E-6 C . The particle is…
A: particle having mass m = 2.80E-4 kg negative charge q= −1.70E-6 C . The particle is given an…
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- A metal cylinder with a radius "R" is placed with its central axis aligned with the z axis. A current, I, flows along its surface only (no current flows on the interior of the cylinder). Calculate the magnetic field strength as a function of distance, r, away from the center of the cylinder for two different regions: (a) r<R and (b) r>R.The magnetic dipole moment of the nickel atom is about 5.6 x 10-24 A· m2. (a) Calculate the maximum magnetic dipole moment (in A •m²) of a domain consisting of 1019 nickel atoms. A: m2 (b) What current (in A) would have to flow through a single circular loop of wire of diameter 2.2 cm to produce the magnetic dipole moment you calculated? AA particle having mass m = 2.80E-4 kg carries a negative charge q= −1.70E-6 C . The particle is given an initial velocity in the −y direction (downward), as shown in the figure, of v = 3.65E2 m/s. Everywhere in space there is a uniform constant magnetic field B = 0.340 T pointing in the +z direction, which is out of the plane of the page. What is the radius of the cyclotron orbit trajectory that this particle will move along (in m)?
- Nonuniform displacement current. The figure shows a circular region of radius R = 3.5 cm in which a displacement current is directed out of the page. The magnitude of the displacement current is J, = (2 A)(r/R), where r is the radial distance (r < R) from the center. What is the magnitude of the magnetic field due to Ja at radial distances (a) r= 1.5 cm and (b) r%3D 4.0 cт? R 11.42 (а) В - 100 (b) В %-An ion enters a region of a uniform magnatic field Bout = 0.4T, with a speed v= 5*10^5 m/s. The ion makes a circular pathof radius r =9.4 mm. Then what is mass to charge ratio(m/q), (in ug/C) of the ion?A particle having mass m = 2.80E-4 kg carries a negative charge q= −1.70E-6 C . The particle is given an initial velocity in the −y direction (downward), as shown in the figure, of v = 2.41E2 m/s. Everywhere in space there is a uniform constant magnetic field B = 0.340 T pointing in the +z direction, which is out of the plane of the page. What is the the magnetic force that B exerts on the particle (in N; use positive sign if the force points in the +x direction and negative sign if the force points in the −x direction)?