A converging lens is placed at x = 0, a distance d = 11.0 cm to the left of a diverging lens as in the figure below (where FC and FD locate the focal points for the converging and the diverging lens, respectively). An object is located at x =−1.80 cm to the left of the converging lens and the focal lengths of the converging and diverging lenses are 4.50 cm and −8.60 cm, respectively. a) Determine the x-location in cm of the final image. b) Determine its overall magnification.
A converging lens is placed at x = 0, a distance d = 11.0 cm to the left of a diverging lens as in the figure below (where FC and FD locate the focal points for the converging and the diverging lens, respectively). An object is located at x =−1.80 cm to the left of the converging lens and the focal lengths of the converging and diverging lenses are 4.50 cm and −8.60 cm, respectively. a) Determine the x-location in cm of the final image. b) Determine its overall magnification.
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A converging lens is placed at
x = 0, a distance d = 11.0 cm to the left of a diverging lens as in the figure below (where FC and FD locate the focal points for the converging and the diverging lens, respectively). An object is located at x =−1.80
cm to the left of the converging lens and the focal lengths of the converging and diverging lenses are 4.50 cm
and −8.60 cm, respectively.
a) Determine the x-location in cm of the final image.
b) Determine its overall magnification.
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