In a normal healthy eye, the eye lens's focal length can be varied (accommodation) between a maximum value fmax=2.5 cm (fully relaxed, viewing a distant object at infinity) and a minimum value fmin≈2.27 cm (maximally strained, viewing an object at the near point, 25 cm), since the retina-to-lens image distance is fixed at about 2.5 cm; this small variation, only about 0.23 cm of focal-length change, is enough to bring everything from infinity down to the near point into sharp focus. Myopia (nearsightedness) occurs when the eye lens has too short a focal length (from a thickened lens or an elongated eyeball), so that parallel rays from a distant object focus in front of the retina rather than on it, blurring distant vision while nearby objects (within the person's own reduced far point x) remain clear; using the lens equation with the correcting lens required to image an object at infinity onto the person's far point (u=−∞, v=−x) gives a required focal length f=−x, i.e. a diverging (concave) spectacle lens, whose negative power spreads the parallel rays out slightly before they enter the eye so they now focus correctly at the retina. Hypermetropia (farsightedness or hyperopia -- age-related loss of accommodation of this kind is specifically called presbyopia) occurs when the eye lens has too long a focal length (from a thinned lens or a shortened eyeball), so near objects focus behind the retina and the person's near point y is pushed out well beyond the normal 25 cm; using the lens equation for a correcting lens that images an object at y onto the standard near point (u=−y, v=−25cm) gives a required focal length f=y−2525y (in cm), always positive since y>25, i …