Thin lenses. Object Ostands on the central axis of a thin symmetric lens. For this situation, each problem in the table (below) gives object distance p (centimeters), the type of lens (C stands for converging and Dfor divergingl, and then the distance (centimeters. without proper sign) between a focal point and the lens. Find (a) the image distance i and (b) the lateral magnification mof the object. including signs. Also, determine whether the image is (c) real or virtual, (d) inverted from object Oor noninverted, and le) on the same side of the lens as object Oor on the opposite side. (a) (b d) e) Lens RV UNI Side

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Thin lenses. Object Ostands on the central axis of a thin symmetric lens. For this situation, each problem in the table (below) gives
object distance p (centimeters), the type of lens (C stands for converging and D for diverging), and then the distance (centimeters.
without proper sign) between a focal point and the lens. Find (a) the image distance i and (b) the lateral magnification mof the object.
including signs. Also, determine whether the image is (c) real or virtual, (d) inverted from object Oor noninverted, and (e) on the same
side of the lens as object O or on the opposite side.
(a) (b) () (a) (e)
Lens
i m RV UNI Side
+20 C.7.8
(a) Number
Units
(b) Number
Units
(c)
(d)
(e)
Transcribed Image Text:Thin lenses. Object Ostands on the central axis of a thin symmetric lens. For this situation, each problem in the table (below) gives object distance p (centimeters), the type of lens (C stands for converging and D for diverging), and then the distance (centimeters. without proper sign) between a focal point and the lens. Find (a) the image distance i and (b) the lateral magnification mof the object. including signs. Also, determine whether the image is (c) real or virtual, (d) inverted from object Oor noninverted, and (e) on the same side of the lens as object O or on the opposite side. (a) (b) () (a) (e) Lens i m RV UNI Side +20 C.7.8 (a) Number Units (b) Number Units (c) (d) (e)
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