16. Light that has a wavelength of A in vacuum is incident on a piece o glass (n = 1.6) coated with a film of thickness t with n = 1.3. Determine which of the following equations one could use to determine the thicknesses that would show destructive interference upon reflection.

Physics for Scientists and Engineers
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Chapter37: Diffraction Patterns And Polarization
Section: Chapter Questions
Problem 6P: What If? Suppose light strikes a single slit of width a at an angle from the perpendicular...
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16.
Light that has a wavelength of A in vacuum is incident on a piece of
glass (n = 1.6) coated with a film of thickness t with n = 1.3.
Determine which of the following equations one could use to
determine the thicknesses that would show destructive
interference upon reflection.
A. 2t = ¹2(λ/1.6)
B. 2t = ¹/2 (1)
C. 2t = 1/2 (λ/1.3)
D. 2t = (λ/1.6)
Transcribed Image Text:16. Light that has a wavelength of A in vacuum is incident on a piece of glass (n = 1.6) coated with a film of thickness t with n = 1.3. Determine which of the following equations one could use to determine the thicknesses that would show destructive interference upon reflection. A. 2t = ¹2(λ/1.6) B. 2t = ¹/2 (1) C. 2t = 1/2 (λ/1.3) D. 2t = (λ/1.6)
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