Two plane mirrors meet at a 121° angle, (Figure 1). If light rays strike one mirror at 34° as shown, at what angle do they leave the second mirror? Express your answer using two significant figures. 34°
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- You are imaging a pencil through a thin, converging lens as shown in the image below. If p (the distance from the object to the center of the thin lens) is 8.15m and the focal length of the thin lens is 0.42m, how far away (in meters) from the center of the thin lens is the real image located (the real image will be on the right-side of the lens in this particular example illustrated below)? Ray 1 Ray 1 focal point Ray 2 Sis Secondary Ray 3 Ray 3 Object Converging lens focal point Principal Real image Note: Do not explicitly include units in your answer (it is understood the unit is meter). Enter only a number. If you do enter a unit, your answer will be counted wrong.An object is placed 7.7 cm in front of a concave mirror of radius of curvature 10-cm. 1) Calculate the image distance. Follow the sign convention. (Express your answer to two significant figures). 2) Calculate the magnification of the image. (Express your answer to two significant figures). 3) Is the image real or virtual? 4) Is the image upright or inverted?Two plane mirrors are at an angle of ?1 = 57.6° with each other as in the side view shown in the figure below. If a horizontal ray is incident on mirror 1, at what angle ?2 does the outgoing reflected ray make with the surface of mirror 2?
- Two plane mirrors are at an angle of ?1 = 53.6° with each other as in the side view shown in the figure below. If a horizontal ray is incident on mirror 1, at what angle ?2 does the outgoing reflected ray make with the surface of mirror 2? Answer in degrees °A beam of light is incident from air on the surface of a liquid. If the angle of incidence is 36.2° and the angle of refraction is 25.0°, find the critical angle for the liquid when surrounded by air. Step 1 When light goes from one material into another having a higher index of refraction, the light bends toward the normal line as shown in part (a) of the diagram. 02 air liquid (a) (b) We are given that when = 36.2°, the angle of refraction in the liquid is = 25.0°. Thus, from Snell's law, the index of refraction of the liquid is nliquid = nair sin sin e = (1.00) sin sin 25.0° 0 (0.423)The lens and mirror in the figure below are separated by 1.00 m and have focal lengths of +80.9 cm and -50.6 cm, respectively. Object Lens Mirror 1,00 m 1.00 m- If an object is placed 1.00 m to the left of the lens, where will the final image be located? 93 = -44 x cm [to the left of the lens State whether the image is upright or inverted. upright. inverted. Determine the overall magnification. 0.576
- i) Ray parallel to the optical axis; ii) Focal ray; iii) Central ray, iv) Draw the image of the arrow, v) Indicate in the same figure, from where to where di (image-lens distance) is. Use the figure, Do not substitute it with any other figure. Don't forget to put the direction on each ray, both the incident rays and the transmitted rays. Label each ray. Image characteristics for Case 3: Object distance d0=R. Choose the ones that apply: a) Virtual b) Real c) Inverted d) Increased e) No image is formed f) Equal size g) Reduced h) ErectProblem 2: What is the smallest angle 1 for which a laser beam will undergo total internal reflection on the hypotenuse of the glass prism in figure? a. Draw the refracted and reflected rays inside the glass prism, and the refracted ray as it exits the prism. b. Clearly mark all angles. Show all your calculations here. Ꮎ 30° 60%