1) An object is 25cm from a concave mirror of 5 cm focal length. The object is 3.6 cm high. A) Determine the distance to the image. B) Determine the height of the image.
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![1)
An object is 25cm from a concave mirror of 5 cm focal
length. The object is 3.6 cm high.
A)
Determine the distance to the image.
B)
Determine the height of the image.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F382eb6dd-2dfb-405f-a1ab-99f334d616ee%2Fff9945f7-c028-4dab-8f79-1c4b02fea417%2Fit37k7_processed.jpeg&w=3840&q=75)
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- 3. A concave makeup mirror is designed to produce a virtual image that is one and a half times the size of the object when the distance between the object and the mirror is 17.0 cm. What is the focal length of the mirror? cmIP A magician wishes to create the illusion of a 2.66- m-tall elephant. He plans to do this by forming a virtual image of a 46.0-cm-tall model elephant with the help of a spherical mirror. You may want to review (Pages 923 - 928). If the model must be placed 2.65 m from the mirror, what radius of curvature is needed? R= -4.52 1Π ΑΣΦ 4 Submit Previous Answers Request Answer Part C * Incorrect; Try Again; 2 attempts remaining How far from the mirror will the image be formed? di 15.3 m Submit ? Previous Answers m Review ✓ Correct Here we learn how to determine the distance from the mirror to the image. The image distance is negative, thus, the image is behind the mirror.To view an insect, an entomologist places a converging lens with a focal length of 10 cm a distance of 8.0 cm from the insect. What will be the magnification of the insect's image? O a. +4 b. +3 O c. +6 d. +7 O e. +5
- 2. An object is located 60.0 cm to the left of a concave mirror (with R = 30 cm). a) What is the focal length for this mirror? Include the correct sign (positive or negative). b) Use the mirror equation to find the location of the image. State whether the image is real or virtual. c) Use the magnification equation to find the magnification of the image. State whether the image upright or inverted, and magnified or diminished. d) Confirm your answer to part (b) by drawing a ray diagram on the figure to find where image is located (Use three rays). 11. In an amusement park a large upright convex spherical mirror is facing a plane mirror 10.0 m away. A girl 1.0 m tall standing midway between the two sees herself twice as tall in the plane mirror as in the spherical one. What is the focal length of the latter?A spherical mirror is to be used to form an image, four times as tall as an object, on a screen positioned 4.4 m from the mirror. (a) Describe the type of mirror required. The mirror is a ---Mirror Type--- mirror and it has a focal length of ---Mirror Type--- (b) Where should the m The object shou concave convex ct? rror. m.
- A concave lens has a focal length of -45 cm. a) Find the image distance that results when an object is placed 32 cm in front of the lens. b) Find the magnification that results when an object is placed 32 cm in front of the lens.15. An object is placed 70.0 cm in front of a lens whose focal length is +23.0 cm. The image that is formed of this object will be: a) inverted and 2.04 times the size of the object. b) inverted and 0.489 times the size of the object. c) erect and 2.04 times the size of the object. d) erect and has the same size as the object. e) erect and 0.489 times the size of the object.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. R
- A person whose height is 1.5m is located 3m from an anti-theft mirror installed in a store. a store. The focal length of the mirror is -0.25m. Find:a) The position of his image.b) The magnificationc) The height of the imageAssuming the orientation of the object is upright, if the magnification of a mirror or lens is negative, it means that A) the image must be smaller than the object. B) the image must be inverted and smaller than the object. C) the image must be inverted. D) the object must be farther from the mirror (or lens) than the image. E) the image must be farther from the mirror (or lens) than the object.An image is located 346 mm behind a 204 mm focal length lens. A) Find the object distance. B) Find the magnification of the image. C) Is the image upright or inverted? factor of 4 or when you place it 8.0 cm behind a lens the