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A. 1. A magnified, inverted image is located a distance of 30.0 cm from a concave mirror with a local length of 15.0 cm. What
A. 1. A magnified, inverted image is located a distance of 30.0 cm from a concave mirror with a local length of 15.0 cm. What is the object distance? 2. An object is placed 33.7 cm from the convex mirror with a local length of 10.7 cm. Determine the image distance. 3. A 7.0-cm tall light bulb is placed a distance of 37.5cm from a convex mirror having a focal length of -12.5cm. Determine the image distance and the image size. 4. Determine the image distance and image height for a 8.00-cm tall object placed 46.6 cm from a convex lens having a focal length of 16.0 cm. 5. A 3.10-cm diameter coin is placed a distance of 25.0 cm from a concave lens that has a focal length of a -11.0 cm. Determine the image distance and the diameter of the image.B. Direction: You will be given two problems: one involves curved mirrors, while the other one involves lenses. 1'|"our task E to predict the qualitative characteristics (location, orientation, size, and tvpe] of images formed bv a curved mirror or lens by applying the rain:r diagramming technique and supporting it with calculation involving mirror or lens equation and to explain its possible application to an optical instrument. 1. Scientist use mirror to see the teeth's image during anv dental procedures. Having this in mind, let's answer a problem: A LEDcm tooth is placed 3.l]cm from a concave mirror having a focal length of 5.0 cm. Determine the image distance and image height. IMAGE E'S LUST Orientation Size T -e 2. In this time of digital age, photocopier has been a helpful for student and even in offices. Having this mind; let's answer a problem: What is the image distance and image size if a 4.cm tall object is placed at a distance of 1D.D cm from a convex lens having a focal length of 5.3 cm? IMAG E'S LOST
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