Now this film is on a sheet of glass, with n = 1.53. What is the wavelength of the light in air that will now be predominantly reflected? What changed compared to previous problem? What is the requirement for a maximum for the pathlength difference now? Submit Answer Incorrect. Tries 9/12 Previous Tries
Now this film is on a sheet of glass, with n = 1.53. What is the wavelength of the light in air that will now be predominantly reflected? What changed compared to previous problem? What is the requirement for a maximum for the pathlength difference now? Submit Answer Incorrect. Tries 9/12 Previous Tries
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
Transcribed Image Text:A thin film of soap with n = 1.34 hanging in the air reflects dominantly red light with
1.235x10² nm
You are correct.
Your receipt no. is 161-6057 ℗
Previous Tries
=
662 nm. What is the minimum thickness of the film?
Now this film is on a sheet of glass, with = 1.53. What is the wavelength of the light in air that will now be predominantly reflected?
What changed compared to previous problem? What is the requirement for a maximum for the pathlength difference now?
Submit Answer Incorrect. Tries 9/12 Previous Tries
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