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The figure below shows three edge views of a square loop with sides of length { = 0.500 m in a magnetic field of magnitude

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The figure below shows three edge views of a square loop with sides of length { = 0.500 m in a magnetic field of magnitude 1.50 T. Calculate the magnetic flux (in Wb) through the loop oriented perpendicular to the magnetic field, 60.0 from the magnetic field, and parallel to the magnetic field. B B 60.0 X X X HINT (a) perpendicular to the magnetic field Wb (b) 60.0 from the magnetic field wb (c) parallel to the magnetic field WbThe gure below shows an end View of a solenoid along its axis. The solenoid has a circular cross section with a radius of! = 3.00 cm. It consists of 120 turns of wire and is 25.0 cm long. InSide the solenoid, near its center and coaxial with it, is a single loop of wire in the shape ofa square, with each side of length i = 1.00 cm. (The plane of the square loop is perpendicular to the solenoid axis.) G) (a) Initially, there is a steady current of 3.50 A through the solenoid. What is the magnitude of the magnetic ux (in T - m2) through the square loop? (b) The current in the solenoid is then reduced from its initial value to zero within 2.50 5. What is the magnitude of the average induced emf (in V) in the square loop during this time? |:|V Need Help

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