Consider the optical system shown in the figure. The lens and mirror are separated by d = 1.00 m and have focal lengths of f, = +90.5 cm and f, = -50.4 cm, respectively. An object is placed p = 1.00 m to the left of the lens as shown. Object Lens Mirтor 1.00 m 1.00 m (a) What is the distance (in cm) and location of the final image formed by light that has gone through the lens twice? (Give the magnitude of the distance and select its location with respect to the lens.) distance cm location --Select--- (b) Determine the overall magnification of the image. (c) State whether the image is upright or inverted. O upright O inverted

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Consider the optical system shown in the figure. The lens and mirror are separated by d = 1.00 m and have focal lengths of f, = +90.5 cm and f, = -50.4 cm, respectively. An object is placed p = 1.00 m to
the left of the lens as shown.
Object
Lens
Mirтor
1.00 m
1.00 m
(a) What is the distance (in cm) and location of the final image formed by light that has gone through the lens twice? (Give the magnitude of the distance and select its location with respect to the lens.)
distance
cm
location
--Select---
(b) Determine the overall magnification of the image.
(c) State whether the image is upright or inverted.
O upright
O inverted
Transcribed Image Text:Consider the optical system shown in the figure. The lens and mirror are separated by d = 1.00 m and have focal lengths of f, = +90.5 cm and f, = -50.4 cm, respectively. An object is placed p = 1.00 m to the left of the lens as shown. Object Lens Mirтor 1.00 m 1.00 m (a) What is the distance (in cm) and location of the final image formed by light that has gone through the lens twice? (Give the magnitude of the distance and select its location with respect to the lens.) distance cm location --Select--- (b) Determine the overall magnification of the image. (c) State whether the image is upright or inverted. O upright O inverted
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