A thick slab of height a is straddling the ry plane, as shown in the figure. The slab carries a volume current density J = Jolz|î, where Jo is a constant. Find the magnetic field, as a function of z, both inside and outside the slab. %3D
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- Nonuniform displacement-current density. The figure shows a circular region of radius R = 5.0 cm in which a displacement current is directed out of the page. The magnitude of the density of this displacement current is given by Jo (9 A/m2)(1-r/R), where r is the radial distance (r< R). What is the magnitude of the magnetic field due to the displacement current at (a) r = 2.5 cm and (b) r= 6.5 cm? RThe two wires shown in the figure below are separated by d = 11.1 cm and carry currents of I = 4.90 A in opposite directions. 2d- (a) Find the magnitude and direction of the net magnetic field at a point midway between the wires. magnitude µT direction --Select--- (b) Find the magnitude and direction of the net magnetic field at point P,, 11.1 cm to the right of the wire on the right. magnitude direction |---Select--- (c) Find the magnitude and direction of the net magnetic field at point Pa, 2d = 22.2 cm to the left of the wire on the left. magnitude uT direction ---Select---A circular region 4.00 m in radius is filled with an electric field perpendicular to the face of the circle. The magnitude of the field in the circle varies with radius and time as E(r, t) = Arcos (@t) where A = 1000. V/m² and w = 3.00 x 10⁹ s¨¹. What is the maximum value of the magnetic field at the edge of the region? i T