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a. Which of Maxwell's equations states that changing magnetic flux induces an electric field? Identify it two ways: (i) Another name (ii) A mathematical equation.b.

a. Which of Maxwell's equations states that changing magnetic flux induces an electric field? Identify it two ways: (i) Another name (ii) A mathematical equation.b. Monochromatic light is sent vertically downward onto a detector plate, forming a "spot" of light with a diameter of 2.50 mm. The maximum electric field magnitude in this light as it arrives at the detector is 1000 V/m. You have three sheets of polarizing film (A, B and C), which you can place between the laser and the detector (one sheet on top of another)?in any order you wish?but with their respective polarization plane angles always oriented as follows: Film A: due north Film B: 15 west of north Film C: 39 north of east. What is the greatest amount of light energy that could arrive at the detector in 10.0 s when you use all three films?c. Using all three films in the same order as your solution to part b, suppose you could now change the polarization plane angle of only the middle film (i.e. rotate only that film?keeping it always horizontal). What is the greatest magnetic field amplitude you could achieve at the detector plate with such an adjustment?

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2. a. Which of Maxwell's equations states that changing magnetic flux induces an electric field? Identify it two ways: (i) Another name (ii) A mathematical equation. b. Monochromatic light is sent vertically downward onto a detector plate, forming a "spot" of light with a diameter of 2.50 mm. The maximum electric field magnitude in this light as it arrives at the detector is 1000 V/m. You have three sheets of polarizing film (A, B and C), which you can place between the laser and the detector (one sheet on top of another)-in any order you wish-but with their respective polarization plane angles always oriented as follows: Film A: due north Film B: 15" west of north Film C: 39% north of east What is the greatest amount of light energy that could arrive at the detector in 10.0 s when you use all three films? c. Using all three films in the same order as your solution to part b, suppose you could now change the polarization plane angle of only the middle film (i.e. rotate only that film-keeping it always horizontal). What is the greatest magnetic field amplitude you could achieve at the detector plate with such an adjustment

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