Thin lenses. Object O stands 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 m of the object, including signs. Also, determine whether the image is (c) real or virtual, (d) inverted from object O or noninverted, and (e) on the same side of the lens as object O or on the opposite side.

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Please note that the lens is converging.

Thin lenses. Object O stands 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 m of the object, including signs. Also, determine whether the
image is (c) real or virtual, (d) inverted from object O or noninverted, and (e) on the same
side of the lens as object O or on the opposite side.
(a) (b) (c)
(d)
(e)
p
Lens
i m RV I/NI Side
+52 C, 30
Transcribed Image Text:Thin lenses. Object O stands 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 m of the object, including signs. Also, determine whether the image is (c) real or virtual, (d) inverted from object O or noninverted, and (e) on the same side of the lens as object O or on the opposite side. (a) (b) (c) (d) (e) p Lens i m RV I/NI Side +52 C, 30
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