Sunlight falls on a concave mirror and forms an image that is 3.0 cm from the mirror. An object that is 24 mm tall is placed 12.0 cm from the mirror. a. Sketch the ray diagram to show the location of the image. b. Use the mirror equation to calculate the image position. c. How tall is the image?
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- 7. An object is placed 8 cm away from a mirror with focal length 12 cm. Which of the following statements is correct? a. The image is virtual and on the same side of the mirror as the object. b. The image is real and on the same side of the mirror as the object. c. The image is real and on the opposite side of the mirror as the object. d. The image is virtual and on the opposite side of the mirror as the object. 80 DO0 600 F2 F7 F8 24 3 4. 5 6 7 8. 9. RAn object 0.720 cm tall is placed 15.5 cm to the left of the vertex of a convex spherical mirror having a radius of curvature of 24.0 cm. A. Calculate the position of the image. Express your answer in centimeters. B. Calculate the size of the image. Express your answer in centimeters. C.Find the orientation (upright or inverted) and the nature (real or virtual) of the image. a. upright and real b. upright and virtual c. inverted and real d. inverted and virtualA concave mirror has a focal length of 18 cm. An object is located 45 cm from the surface of the mirror. a. How far from the mirror is the image of this object? b. Is the image real or virtual, upright or inverted?
- What is the focal length (f) of a convex lens if the measured distance from the lens to the object = 30 cm and the distance to the image = 73.2 cm? a. 15.1 cm b. 103.2 cm c. 21.3 cm d. 2196 cmObject A is placed in front of a concave mirror with the center O, as shown in the figure below. Which statement is true? A O O A. The image is virtual and inverted. O B. The image is real and upright. O C. The image is virtual and upright. O D. The image is real and inverted.An object is placed 10 cm away from the surface of a concave mirror with f = 4. What are the characteristics of the image formed? A. virtual, upright, same size B. virtual, upright, enlarged C. real, inverted, reduced D. no image is produced
- An object of 20 cm height and at a distance 70 cm from a plane mirror, what are the image characters and size? A. Real, inverted, same size B. Virtual, upright, same size C. Vitrual, inverted, same size D. Real, upright, same sizeWrite P if only statement A is correct, H if only statement B is correct, Y if both statements are correct and S if both statements are incorrect. 1. A. A mirror that curves inward is called a convex mirror. B. Light can be reflected from curved mirrors. 2. A. The focal point of a convex mirror is behind the mirror. B. The image in a concave mirror is always enlarged and upright 3. A. Light is bent when passing through a different medium B. Bending of light is called diffraction 4. A convex lens is a diverging lens. B. Rays of light are bent outwards by a concave lens 5. A. For plane mirrors, the image distance is the same as the object distance. B. Virtual images result when the reflected light diverge.For the mirror in the attached picture, locate the image by drawing a ray diagram (3 rays) and describe the image. Is it: a. Upright, virtual, reduced. b. Inverted, real, magnified. c. Inverted, virtual, magnified. d. Upright, real, reduced. Thank you.
- An object is 80 cm from a concave mirror of radius 1 m. Describe the formed image in this case. Why? A. Real, inverted, and reduced B. Real, upright, and reduced C. Real, inverted, and enlarged D. Virtual, inverted, and enlargedWhich two of the following statements are true? Select one or more: a. In the plane mirror the image is symmetrical with the object. b. An apparent image of the object can only be seen in the plane mirror. c. The real image of the object can only be seen in the plane mirror. Od. In the plane mirror the image is reduced in comparison of the object. e. In the plane mirror the image is magnified in comparison of the object f. The image does not appear in the plane mirror. g. In the plane mirror the image is asymmetrical in comparison of the object. U