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  2. Corrective lens - Wikipedia

    en.wikipedia.org/wiki/Corrective_lens

    High-index plastics (thiourethanes) Refractive index (n d): 1.600–1.740; Abbe number (V d): 42–32 (higher indexes generally result in lower Abbe numbers) Density: 1.3–1.5 (g/cm³) UV cutoff: 380–400 nm; High-index plastics allow for thinner lenses.

  3. Refractive index - Wikipedia

    en.wikipedia.org/wiki/Refractive_index

    For lenses (such as eye glasses), a lens made from a high refractive index material will be thinner, and hence lighter, than a conventional lens with a lower refractive index. Such lenses are generally more expensive to manufacture than conventional ones.

  4. CR-39 - Wikipedia

    en.wikipedia.org/wiki/CR-39

    CR-39 is about half the weight of glass with an index of refraction only slightly lower than that of crown glass, and its high Abbe number yields low chromatic aberration, altogether making it an advantageous material for eyeglasses and sunglasses. A wide range of colors can be achieved by dyeing of the surface or the bulk of the material.

  5. Eyeglass prescription - Wikipedia

    en.wikipedia.org/wiki/Eyeglass_prescription

    An eyeglass prescription is an order written by an eyewear prescriber, such as an optometrist, that specifies the value of all parameters the prescriber has deemed necessary to construct and/or dispense corrective lenses appropriate for a patient. If an eye examination indicates that corrective lenses are appropriate, the prescriber generally ...

  6. Gradient-index optics - Wikipedia

    en.wikipedia.org/wiki/Gradient-index_optics

    A gradient-index lens with a parabolic variation of refractive index (n) with radial distance (x). The lens focuses light in the same way as a conventional lens. Gradient-index (GRIN) optics is the branch of optics covering optical effects produced by a gradient of the refractive index of a material.

  7. Abbe number - Wikipedia

    en.wikipedia.org/wiki/Abbe_number

    In optics and lens design, the Abbe number, also known as the V-number or constringence of a transparent material, is an approximate measure of the material's dispersion (change of refractive index versus wavelength), with high values of V indicating low dispersion.

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