Mirror Lens Object Ꭰ The object in Figure above is midway between the lens and the mirror, which are 30cm apart. The mirror's radius of curvature is 20cm, and the lens has focal length of -17.5cm. The object (special lamp) is projecting light only toward the mirror. Locate the distance of the final image (formed by this mirror lens system) from the lens. State your answer in cm to the nearest 0.01 cm.
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A: Write the given values of this problem. f=-10 cmu=12 cm
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A: Object distance is = S =12 cm image distance is = s' = 15 cm
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A: Since you have asked multiple questions we will answer the first one for you. Kindly post the other…
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A: Given Focal length f = -345 mm = -34.5 cm Image distance v = - 46.1 cm
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A: Given, distance of the car, u = 17.0 m magnification of the car, m = 0.29
Q: Mirror Lens Object D The object in Figure above is midway between the lens and the mirror, which are…
A: For mirror :- focal length f1 = Radius of curvature /2…
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- Suppose you have a concave mirror as shown in the image below. If h = 1.84m is the height of an object (really the displacement of the top of the object from the axis) and h' = 4.21m is the height of the image, what is the magnitude of the transverse magnification (in units of meters)? Image ObjectI need help woth these questions pleaseIF YOU CAN NOT ANSWER BOTH DO NOT ANSWER ALSO ANSWER IN 3 SIG FIG USING SCIENTIFIC NOTATION USING E
- If the real image for a 11.6 cm focal length concave mirror is located 20.1 cm from the mirror, determine the location of the object. cm Additional Materials ReadingPlease type the answer instead of hand writting thanksTwo 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 °
- Part A How far apart are an object and an image formed by an 95 -cm -focal-length converging lens if the image is 3.20 x larger than the object and is real? Express your answer using two significant figures. ? do + d; = Cimsolve and explain each oneConvex and Concave Lens (а.) (b.) In the above figures f is located at the focal point of the lens. For each statement select True or False. False O An object placed to the left of f and the lens in Fig. b produces a real image. False An object placed to the left of f in Fig. a results in an image on the right side of the lens. O An object placed to the left of f and the lens in Fig. a produces a virtual image. O An object placed betweenf and the lens in Fig. a produces a virtual image. O An object placed to the left of f in Fig. b results in an image on the right side of the lens. O An object placed between f and the lens in Fig. a results in an image on the left side of the lens. O The lens in Fig. a is a converging lens. False True False False True Submit Answer Incorrect. Tries 4/6 Previous Tries
- 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. 0.576Part A A reflecting telescope (Figure 1) has a radius of curvature of 3.00 m for its objective mirror and a radius of curvature of -1.50 m for its secondary mirror. rea If the distance between the two mirrors is 0.92 m, how far in front of the secondary mirror should you place the electronic sensor to record the image of a star? ent Sharing ettings Express your answer to two significant figures and Include the approprlate units. e Tools HA ? d; = Value Units %3D Figure 1 of 1 Submit Request Answer < Return to Assignment Provide Feedback Secondary mirror SensorSpherical Mirror 2 You wish to create image that is 10 meters from an object. This image is to be upright and half the height of the object. You wish to accomplish this using one spherical mirror. Part A What is the focal length f of the mirror that would accomplish this? Express your answer in meters, as a fraction or to three significant figures. ▸ View Available Hint(s) f= for Painte For Partido for Part redo foart A reor Part. A keyboard shortcuts for Part A help for Part.A. Submit Previous Answers * Incorrect; Try Again; 8 attempts remaining Part B Complete previous part(s) Part C Complete previous part(s) Part D Complete previous part(s) Provide Feedback In