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Can you please double check part 1 on this attachment and do part 2. Both tables and questions a and b. Thank you. Using a

Can you please double check part 1 on this attachment and do part 2. Both tables and questions a and b. Thank you.

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Using a focal length of 3.0 cm, set up each situation on the simulation for Procedures I (2), I(b), I(c) and I(d) and note the position of the object O, the position of focal point, the radius of the mirror R., and the position of the image, I. Complete the table below. Also indicate whether p, q, and Mare (+) or (-). Focal length was set to -3.0 because program was glitching when get to +3.0 cm. Procedure Object p (cm) q (cm) Image Object Image position size Orientation I (2) 6 6 -3 inverted I (b 2f-p> f 5 7.5 -4.5 inverted I (9) p > 2f 10 4.29 -1.29 inverted I p f I (9) p > 2f 7.5 cm (calculate) Check your answers using Program: http://ophysics.com/110.html From the above table, calculate the following ratios: Image Distance / Object Distance Image size Object size 1% Difference I(E): I(b): I(C): Questions: (2) What conclusions can be made about the image forming properties of (i) positive or concave mirrors; and (il) negative or convex mirrors. (b) An upright object is placed in front (to the left) of a concave mirror. The radius of curvature of the mirror is 40 cm. (2) Where should the object be placed in order to obtain an image that is twice as large as the object? (b) Is the image upright or inverted or could it be both? Explain

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