Ophthalmic Optics and Formulas Flashcards
7 cards from real NOCE practice questions. Tap to flip, then mark Knew It or Still Learning — missed cards come back until you master them.
Read the first 7 Ophthalmic Optics and Formulas flashcards as text
Using Snell's law, if light strikes glass (n = 1.50) at 30° from the normal in air (n = 1.00), what is the approximate angle of refraction?
Answer: 19.5°
n₁ sin θ₁ = n₂ sin θ₂ → sin θ₂ = sin 30° / 1.50 = 0.333, so θ₂ ≈ 19.5°.
What is the critical angle for total internal reflection in a material with n = 1.50?
Answer: 41.8°
sin θc = 1/n = 1/1.50 = 0.667; θc = arcsin(0.667) ≈ 41.8°.
A lens material with an Abbe value of 30 has more chromatic aberration than a material with an Abbe value of:
Answer: 58
Higher Abbe values indicate less chromatic dispersion; 58 > 30, so that material has less aberration.
The index of refraction of a material is defined as:
Answer: The ratio of the speed of light in vacuum to the speed of light in the medium
n = c / v, where c is the speed of light in vacuum and v is the speed in the medium.
Standard CR-39 plastic (allyl diglycol carbonate) has an index of refraction of approximately:
Answer: 1.49
CR-39 has an index of approximately 1.499 (commonly cited as 1.49 or 1.50).
Compared to n = 1.50 for the same prescription, a lens made from n = 1.74 material will be:
Answer: Thinner and lighter
Higher index materials allow thinner lens profiles for the same power, reducing both thickness and weight.
The Abbe number (V) is calculated as V = (nD − 1) / (nF − nC). This formula quantifies:
Answer: Chromatic dispersion — higher values mean less dispersion
The Abbe number measures how much a material disperses light by wavelength; higher V means less chromatic aberration.