A uniform thin film of material of refractive index 1.40 coats a glass plate of refractive index 1.55. This film has the proper thickness to cancel normally incident light of wavelength 525 nm that strikes the film surface from air, but it is somewhat greater than the minimum thickness to achieve this cancellation. As time goes by, the film wears away at a steady rate of 4.20 nm per year. Part A What is the minimum number of years before the reflected light of this wavelength is now enhanced instead of cancelled?

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A uniform thin film of material of refractive index
1.40 coats a glass plate of refractive index 1.55.
This film has the proper thickness to cancel
normally incident light of wavelength 525 nm that
strikes the film surface from air, but it is somewhat
greater than the minimum thickness to achieve this
cancellation. As time goes by, the film wears away
at a steady rate of 4.20 nm per year.
Part A
What is the minimum number of years before the
reflected light of this wavelength is now
enhanced instead of cancelled?
Transcribed Image Text:A uniform thin film of material of refractive index 1.40 coats a glass plate of refractive index 1.55. This film has the proper thickness to cancel normally incident light of wavelength 525 nm that strikes the film surface from air, but it is somewhat greater than the minimum thickness to achieve this cancellation. As time goes by, the film wears away at a steady rate of 4.20 nm per year. Part A What is the minimum number of years before the reflected light of this wavelength is now enhanced instead of cancelled?
A uniform thin film of material of refractive index
1.40 coats a glass plate of refractive index 1.55.
This film has the proper thickness to cancel
normally incident light of wavelength 525 nm that
strikes the film surface from air, but it is somewhat
greater than the minimum thickness to achieve this
cancellation. As time goes by, the film wears away
at a steady rate of 4.20 nm per year.
Part A
What is the minimum number of years before the
reflected light of this wavelength is now
enhanced instead of cancelled?
Transcribed Image Text:A uniform thin film of material of refractive index 1.40 coats a glass plate of refractive index 1.55. This film has the proper thickness to cancel normally incident light of wavelength 525 nm that strikes the film surface from air, but it is somewhat greater than the minimum thickness to achieve this cancellation. As time goes by, the film wears away at a steady rate of 4.20 nm per year. Part A What is the minimum number of years before the reflected light of this wavelength is now enhanced instead of cancelled?
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