Question 5: What do you think is causing the bands highlighted in red? What type of interference is observed here?
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A: Explanation:
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- Two slits separated by 0.10 mm are illuminated with green light (2 = 540 nm). Calculate the distance (in cm) from the central bright-region to the fifth bright band if the screen is 1.0 m away. O 2.1 2.7 O 2.5 2.3 2.0Calculate the thickness of Cell 1 and Cell 2 in millimeters from their interference fringe patterns shown below. 1200 1100 1000 cm" Cell 1 rr Cell 2 8.3 10 µm A. Cell 1: 0.78 mm; Cell 2: 0.54 mm B. Cell 1: 0.078 mm; Cell 2: 0.054 mm OC. Cell 1:0.84 mm; Cell 2: 0.44 mm D. Cell 1:0.168 mm; Cell 2: 0.084 mm O E. Cell 1:0.084 mm; Cell 2: 0.044 mmQuestion in picture
- How do polarizing filters manipulate the orientation of light waves to reduce glare?Green light shines through a pair of slits. If the distance between these slits is increased, which of the following statements are true of the resulting interference pattern? The distance between the maxima decreases. The distance between the minima stays the same. The distance between the maxima stays the same. The distance between the minima increases. None of the above.Consider a diffraction grating that produces a second-order maximum for 745 nm red light at an angle of 57.5°. What is the distance, in meters, between lines on such a diffraction grating?