:= 35 ° d:=1 cm E₁:=9 =4 E3: 16 a) What is the index of refraction for the three regions? b) What is the angle of transmission for region 2? (give your angle in degrees) c) What is the angle of transmission for region 3? (give your angle in degrees)
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- Light is incident from medium I to medium 2 at Brewster's angle equal to 55.4°, and transmitted angle is 34.6", the permeability of medium 2 is 3/4. 1- Calculate refractive indices for medium land medium 2. 2- Calculate the reflection coefficient for s-polarized. 3. Reflection coefficient for p- polarized.What is the critical angle (in degrees) for light ray emerging from water to the air? Assume the refractive indices, nwater =1.4 and nair = 1.0 more information is needed to answer this question 1.4 46 there will be no critical angle when light emerges from water to air 0.71A certain kind of glass has an index of refraction of 1.660 for blue light of wavelength 440 nm and an index of 1.630 for red light of wavelength 690 nm. If a beam containing these two colors is incident at an angle of 30.0° on a piece of this glass, what is the angle between the two beams inside the glass? 0.4 Your response differs from the correct answer by more than 10%. Double check your calculations.°
- The figure below shows the path of a beam of light through several layers (n₁ = 1.61, n₂ = 1.38, n3 = 1.22 and n4 = 1.00) of different indices of refraction. NA If 01 = 31.4°, what is the angle, 92, of the emerging beam? Submit Answer Tries 0/5 n₁ n₂ n3 What must the incident angle, 1, be in order to have total internal reflection at the surface between the n3 = 1.22 medium and the n4 = 1.00 medium? Submit Answer Tries 0/5The index of refraction for violet light in silica flint glass is 1.66 and that for red light is 1.62. What is the angular dispersion of visible light passing through an equilateral prism of apex angle 60.0⁰ if the angle of incidence is 54.0°? (See figure. The index of refraction for air is 1.00.) O Visible light Angular spread Deviation of red light G B V Screen RProblem 1 A light traveling in air is partially reflected on the air-water interface and enters the water with an angle of incidence of 34°. The index of refraction of water is nwater = 1.33. Assume that the lengths shown in the figure are AB=12 cm, BE-5 cm, EF =10 cm, DG =10 cm, and that the depth of the water is d=51 cm. a) units. Incident Α' b) 0₁ = OPL Reflected 1 = e) and G). 6 = 0 B Calculate the optical path length of the light labeled Reflected 1 in the above figure, in SI m m C Reflected 1 F rad Reflected 2 G Calculate the transmission angle of the light when it enters water at point B. nair m nwater Calculate the optical path length of the light labeled Reflected 2 in the above figure, in SI units. OPL Reflected 2 = The wavelength of the incident light is 603 nm. Find the optical path difference of these two reflected lights at the finishing line (points F and G). A = Find the relative phase difference of these two reflected lights at the finishing line (points F
- Suppose the figure below represents a ray of light going from air through crown glass into water, such as going into a fish tank. Calculate the amount the ray is displaced by the glass (Ax in mm), given that the incident angle is 35.0° and the glass is 1.45 cm thick. 0₁ 1₂ 13 mm 02 02 AX-on 16 A ray of light, P moving in air strikes a glass slab as shown below. ed 0 02 Air out of 1 question Refractive index =n-1 Glass Slab Refractive index n-1.6 R. The measure of angle 0, is Select one: a. 24.5° b. 26.2° Activa OC45° Go toImagine a light ray is aimed directly along the normal line. Use snell's law to describe what happens to the light upon entering and leaving the dish. inclue a sketch it surface as shown in Fig normal to interface 01 ni air n2 water 02 interface
- A small spotlight mounted in the bottom of a swimming pool that is 3.3 m deep emits light in all directions. On the surface of the pool, directly above the light, the area illuminated is a circle. Determine the maximum radius of this circle. The index of refraction of water is 1.33. m Additional Materials |ReadingA narrow beam of light containning red (650nm) and blue (480nm) wavelength travels through a 1.00 cm thick flat piece of crown glass and back to air again. The beam strikes at a 30 degree incident angle. A) At what angles do the 2 colors emerge. B) what distance are red and blue separated when they emerge? Index refraction of crown glass (1.47)How do I fine N? (Snell's Law) The Refraction of Light Sheet 2 ТОР Q at X=d a at X = . A at Y = 32 Q, at Y=5 . angle of dev. = 29.- C BOTTOM LEFT RIGHT