Object stands on the central axis of a thin symmetric lens. For this situation, each problem in the table refers to

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1. Object stands on the central axis of a thin symmetric lens. For this situation, each problem in
the table refers to
(a) the lens type, converging (C) or diverging (D)
(b) the focal distance f
(c) the object distance p
(d) the image distance i
(e) the lateral magnification m. (All distances are in centimeters.)
(f) whether the image is real (R) or virtual (V)
() inverted (I) or noninverted (NI) from the object
(g) on the same (S) side of the lens as the object or on the opposite (0) side.
Fill in the missing information rounding to 2 sig. figs. (*_
(d)
i
()
R/V
(e)
(a)
Туре
(g)
I/NI
(h)
Side
(b)
(c)
P.
+5.0
+10
-20
+8.0
NI
4.0
+0.25
S
C
+10
+13
Transcribed Image Text:1. Object stands on the central axis of a thin symmetric lens. For this situation, each problem in the table refers to (a) the lens type, converging (C) or diverging (D) (b) the focal distance f (c) the object distance p (d) the image distance i (e) the lateral magnification m. (All distances are in centimeters.) (f) whether the image is real (R) or virtual (V) () inverted (I) or noninverted (NI) from the object (g) on the same (S) side of the lens as the object or on the opposite (0) side. Fill in the missing information rounding to 2 sig. figs. (*_ (d) i () R/V (e) (a) Туре (g) I/NI (h) Side (b) (c) P. +5.0 +10 -20 +8.0 NI 4.0 +0.25 S C +10 +13
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