A sheet of glass (n=1.50) is coated with a 500 nm-thick layer of oil (n=1.42). A. For what visible wavelengths of light do the reflected waves interfere constructively? The range of wavelength of visible light is from 380 nm to 750 nm. B. For what visible wavelengths of light do the reflected waves interfere destructively? C. What is the color of reflected light? D. What is the color of transmitted light?
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- A laser emitting light with a wavelength of 560 nm is directed at a single slit, producing an interference pattern on a screen that is 3.0 m away. The central maximum is 5.0 cm wide. a. Determine the width of the slit and the distance between adjacent maxima. b. What would the effect on this pattern be, if the width of the slit was smaller? the screen was moved further away? a larger wavelength of light was used? c. How would this interference pattern differ if the light was shone through a 1. double slit? 2. diffraction grating?A film material with n coating is 380nm thick. White light is incident perpendicularly to the coating. a. Calculate the frequency of a green light (570TH2) inside the film. 1.25 is used as a coating on a piece of flat glass (n : 1.55). The12. Unpolarised light of intensity lo is incident on a series of three polarising filters. The axis of the second filter is oriented at 45° to that of the first filter, while the axis of the third filter is oriented at 90° to that of the first filter. What is the intensity of the light transmitted through the third filter? A. 1o/2 B. 2lo C. 4lo D. 1/8
- Light with a wavelength of 646 nm passes through two slits and forms an interference pattern on a screen 8.75 Im away. The distance between the two second-order bright fringe is 10.32 cm. What is the separation between the slits? A. 1.99 x 10-4 m B. 3.55 x 10-4 m C.1.10 x 10-4 m D.2.19 x 10-4 m E. 3.01 x 10-4 mSuppose that the picture below shows the dispersion curve for a certain material. Assume that light has wavelengths A, B, and C which travel from the said material to into vacuum. Based on the choices, determine which of them is the correct relationship between their speeds in vacuum setup. 1.46 1.45 1.44 850 1300 1550 Wavelength (nm) a. A = B = C b. A = B < C B < C = A C. d. A< C< B 1o zopu RefractionLight with a wavelength of 646 nm passes through two slits and forms an interference pattern on a screen 8.75 m away. The distance between the two second-order bright fringe is 10.32 cm. What will be the distance between the central bright fringe and the third-order minimum? A. 0.013 m B. 0.064 m. OC. 0.018 m D. 0.024 m E. 0.034 m
- For any vector quantity, be sure to always include the magnitude and direction tyasap plsWhich of the following best describes the cause of thin film interference? a. Light reflecting from a medium having an index of refraction less than that of the medium in which it is traveling. b. Light reflecting from a medium having an index of refraction greater than that of the medium in which it is traveling. c. Light changing its wavelength and speed after reflection. d. Light reflecting from the top and bottom surfaces of a film.
- A thin film of polystyrene n=1.49 coats a piece of glass n=1.55. When illuminated from above, the dominant color of the light reflected to the observer is 473 nanometers wich is blue. What is the minimum thickness of the thin film? A. 317 nm B. 153 nm C. 159 nm D. 305 nm E. 79.4 nmAn air gap exists between two glass plates (n = 1.55). %3D a. Determine the minimum width of the air gap if orange light (495TH2) is strongly reflected. b. Determine the minimum width of the air gap if blue light (660TH2) is not reflected at all. c. Determine the minimum width of the air gap if orange light is strongly reflected AND blue light is not reflected at all.a. What is the angular separation between the third order fringe and the central fringe?