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(Solved): Figure (a) shows the basic structure of a human eye. Light refracts into the eye through the cornea ...






Figure (a) shows the basic structure of a human eye. Light refracts into the eye through the cornea and is then further redir
(a)
(b)
Figure (a) shows the basic structure of a human eye. Light refracts into the eye through the cornea and is then further redirected by lens whose shape (and thus ability to focus the light) is controlled by muscles. We can treat the cornea and eye lens as a single effecti thin lens. See Figure (b). A normal" eye can focus parallel light rays from a distant object to a point on the retina at the back of the eye, where processing of the iisual information begins. As an object is brought close to the eye, however, the muscles must change th shape of the lens so that rays form an inverted real image on the retina. See Figure (c) below. (a) Suppose that for the parallel rays of Figure ( and Figure (b) below, the focal length of the effective thin lens of the eye is . For an object at distance . what focal length ' of the effective lens is required for the object to be seen clearly? (b) Must the eye muscles increase (enter 1 ) or decrease (enter 0 ) the radii of curvature of the eye lens to give focal length ? (a) (b)


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Given focal length of lens of eye =2.56cm Object distance=42.9cm
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