Physics-
General
Easy

Question

The ciliary muscles of eye control the curvature of the lens in the eye and hence can alter the effective focal length of the system. When the muscles are fully relaxed, the focal length is maximum. When the muscles are strained the curvature of lens increases (that means radius of curvature decreases) and focal length decreases. For a clear vision the image must be on retina. The image distance is therefore fixed for clear vision and it equals the distance of retina from eye-lens. It is about 2.5 cm for a grown-up person

A person can theoretically have clear vision of objects situated at any large distance from the eye. The smallest distance at which a person can clearly see is related to minimum possible focal length. The ciliary muscles are most strained in this position. For an average grown-up person minimum distance of object should be around 25 cm. A person suffering for eye defects uses spectacles (Eye glass). The function of lens of spectacles is to form the image of the objects within the range in which person can see clearly. The image of the spectacle-lens becomes object for eye-lens and whose image is formed on retina. The number of spectacle-lens used for the remedy of eye defect is decided by the power of the lens required and the number of spectacle-lens is equal to the numerical value of the power of lens with sign. For example power of lens required is +3D (converging lens of focal length 100/3 cm) then number of lens will be +3. For all the calculations required you can use the lens formula and lens maker's formula. Assume that the eye lens is equiconvex lens. Neglect the distance between eye lens and the spectacle lens
Minimum focal length of eye lens of a normal person is

  1. 25cm    
  2. 2.5cm    
  3. fraction numerator 25 over denominator 9 end fraction c m    
  4. fraction numerator 25 over denominator 11 end fraction c m    

The correct answer is: fraction numerator 25 over denominator 11 end fraction c m


    fraction numerator 1 over denominator f end fraction equals fraction numerator 1 over denominator v end fraction minus fraction numerator 1 over denominator u end fraction
    Here v = 2.5 (Distance of Retina as position of image is fixed)
    u = – x
    table row cell fraction numerator 1 over denominator f end fraction equals fraction numerator 1 over denominator 2.5 end fraction plus fraction numerator 1 over denominator x end fraction end cell row cell text end text text F end text text o end text text r end text text end text f subscript m i n end subscript semicolon x text end text text i end text text s end text text end text text m end text text i end text text n end text text i end text text m end text text u end text text m end text text end text fraction numerator 1 over denominator f subscript text mim  end text end subscript end fraction equals fraction numerator 1 over denominator 2.5 end fraction plus fraction numerator 1 over denominator 25 end fraction end cell end table

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