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Below is given the location of a mirror and a location of an object. Only the locations are given and f with the appropriate sign.

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Below is given the location of a mirror and a location of an object. Only the locations are given and f with the appropriate sign. A. [4] Sketch a mirror in the figure with a positive focal length f20 with f=+10 cm for a light source/object located to the left of the page as shown (light reflected back to the left). Use a compass or circular template to accurately draw the mirror's profile and indicate the value of the radius of curvature. B. [2] Use a ruler to determine the object distance, O. O= cm Optical Axis Object Location Mirror (add Vertex your own Arrow :) ) C. [4] Use ray tracing in this figure (with a straight edge) to find the image of an upright object. (include more than the minimum of 2 rays to find the image. This will give a sense of the precision/uncertainty of your measurements in finding the image distance, I, using ray tracing and include it in D) below). D. [2] Use a ruler to measure and indicate the image distance, I. (include a rough estimate of the precision/uncertainty in this measurement) cm Uncertainty in |~ cm E. [2+2+2] Describe the image here (circle or fill in) -upright / inverted? -magnification (m and sign + / - ?) m= -real / virtual?F. [4] Use the equations developed in class to determine the image distance, I, from your answer to B) above. Comment (10 words or less) on the agreement between this and the ray tracing determination of I. 1= cm G. [4] A second object is placed at 02=+7cm. Use the equations developed in class to determine the image distance, 12, for this 02 and the same focal length of +10cm. 12= cm H. [2+2+2] For O2 determine (not using ray tracing) the image details. Describe the image here (circle or fill in) -upright / inverted? -magnification (m and sign + / - ?) m= -real / virtual

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