Optics related math

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Here's a page with maths related to diopters and glasses.

You don't really need to know any of this stuff to improve your eyesight, but it's good to know for deeper understanding File:Face-smile.svg

Diopters are inverse meters

See Also Diopters

Remember that 100cm = 1m.

D=1meters

conversely

meters=1D

Point of refraction

See also Refraction

s=distance to object (meters)

s=distance to point of refraction (meters)

f=focal length of lens (meters)

P=power of lens (diopters)

1f=(1s)+(1s)

1f=P

Visual acuity equation

(font heightdistance to sign)(18060pi)=arcminutes=a

Note: 5Arcminutes = 20/20

Set up proportion: a(20x)=5(2020)

Visual acuity (mm/metres)

font height(mm)distance to sign(m)×13.75=denominator×of20x

Visual acuity (in/feet)

font height(in)distance to sign(ft.)×1146=denominator×of20x

With text that we are familiar the brain may clear up that text more than our vision actually operates at.[1]

Average axial length accomodation/rate of change

typical emmetropic eye=25mm=25,000 microns

change in axial length of 1mm=3D

If someone with typical eyes wanted to adapt say 20/20 to .25 less normalized within 3-4 months would need to decrease axial length 0.083mm about 0.92microns/day - 0.69microns/day average Credit: Mark Podowski