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College Physics
11th Edition
ISBN: 9781305952300
Author: Raymond A. Serway, Chris Vuille
Publisher: Cengage Learning
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
Transcribed Image Text:I calculated the distance for an object and the height of an object in front of a concave mirror
with these variables:
Focus= 20.0 cm
Distance of object3 50.0 cm
Height of object=21.0 cm
Answer= distance 33.1 cm and height -13.8
From the above information:
-Is the image upside down?
-Is the image real or virtual?
-Is the image smaller or larger?
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- The image formed by a concave mirror is inverted and located at a distance lal = 6 cm in front of it. What can you say about the nature of the image, and its size? can not be determined O real image and magnified virtual image and magnified O virtual image and reduced O real image and reducedarrow_forwardSpherical Mirrors: An object is placed 50 cm in front of a concave mirror with a focal length of 25 cm. What is the magnification produced by the mirror? +1.0 +1.5 O-1.0 -2.0 -0.50arrow_forwardWhat range of do values will result in a virtual image? Infer this information for both the lens and mirror based on the data collected. Report these ranges in terms of f and/or 2f. For example, “When do is less than 2f.”arrow_forward
- A concave mirror produces a virtual image that is nine times as tall as the object. If the object is 26 cm in front of the mirror, what is the image distance? Group of answer choices -311 cm -176 cm -234 cm -78.3 cmarrow_forwardA concave mirror produces a larger, inverted, real image. Which is true regarding the image distance? It is between the radius of curvature and the focal point. It is closer to the mirror than the focal point. It is at the focal point. It is farther away than the radius of curvature.arrow_forwardWhich 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. Uarrow_forward
- convex spherical mirror with a radius of curvature of 16.5 cm produces a virtual image one half the size of the real object. Where is the object? cm (from the mirror)arrow_forwarduse ray tracing to lovate the image formed by concave mirror with focal length of 7.50 cm if the object is placed 10.0 cm in front of the mirror. Is the image upright or inverted? Use object height= 1cm the attached photo is the example.arrow_forward
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