Please answer all parts! In the first question, we determined the direction of the induced current in
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In the first question, we determined the direction of the induced current in the conducting loop as the magnet was approaching it from above, south pole first. Now imagine the magnet has gone through the loop and is now below the loop, falling away from it (still south pole first). (Figure 1) Figure 1 of 1 > Part A Determine the direction of the magnetic field of the magnet through the loop. ► View Available Hint(s) upward Odownward Submit Part B As the magnet falls away from the loop, how is the magnetic flux through the loop changing? ► View Available Hint(s) It is increasing. It is decreasing. There is no change in flux. Submit Part C According to Lenz's law, in which direction is the magnetic field induced by the loop? Oupward downward In the first question, we determined the direction of the induced current in the conducting loop as the magnet was approaching it from above, south pole first. Now imagine the magnet has gone through the loop and is now below the loop, falling away from it (still south pole first). (Figure 1) Figure 1 of 1 > Part A Determine the direction of the magnetic field of the magnet through the loop. ► View Available Hint(s) upward Odownward Submit Part B As the magnet falls away from the loop, how is the magnetic flux through the loop changing? ► View Available Hint(s) It is increasing. It is decreasing. There is no change in flux. Submit Part C According to Lenz's law, in which direction is the magnetic field induced by the loop? Oupward downward
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