A uniform film of TiO2, 1036 nm thick and having index of refraction 2.62, is spread uniformly over the surface of crown glass of refractive index 1.52. Light of wavelength 530.0 nm falls at normal incidence onto the film from air. You want to Part A What is the minimum thickness of TiO, that you must add so the reflected light cancels as desired? Express your answer in nanometers. increase the thickness of this film so that the reflected light cancels. For related problem-solving tips and strategies, you may want to view a Video Tutor Solution of Thin- film interference iii. ? AT = nm Submit Previous Answers Request Answer X Incorrect; Try Again; 4 attempts remaining Part B After you make the adjustment in part A, what is the path difference between the light reflected off the top of the filr the light that cancels it after traveling through the film? Express your answer in nanometers. ? ΔΡΕ nm

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Please help me with Part A, B and C.

<Homework for Module 14 (weekly assignment, individual score)
Exercise 35.25 - Enhanced - with Solution
4 of 5
I Review I Constants
A uniform film of TiO2, 1036 nm thick and having
index of refraction 2.62, is spread uniformly over
the surface of crown glass of refractive index 1.52.
Light of wavelength 530.0 nm falls at normal
incidence onto the film from air. You want to
After you make the adjustment in part A, what is the path difference between the light reflected off the top of the film and
the light that cancels it after traveling through the film?
Express your answer in nanometers.
increase the thickness of this film so that the
reflected light cancels.
?
For related problem-solving tips and strategies, you
may want to view a Video Tutor Solution of Thin-
film interference iii.
AP =
%3D
nm
Submit
Request Answer
Part C
What is the path difference between the light reflected off the top of the film and the light that cancels it after traveling
through the film in wavelengths of the light in the TiO2 film.
Express your answer in wavelengths of the light in the film.
?
ΔΡ-
wavelengths
Submit
Previous Answers Request Answer
X Incorrect; Try Again; 4 attempts remaining
Transcribed Image Text:<Homework for Module 14 (weekly assignment, individual score) Exercise 35.25 - Enhanced - with Solution 4 of 5 I Review I Constants A uniform film of TiO2, 1036 nm thick and having index of refraction 2.62, is spread uniformly over the surface of crown glass of refractive index 1.52. Light of wavelength 530.0 nm falls at normal incidence onto the film from air. You want to After you make the adjustment in part A, what is the path difference between the light reflected off the top of the film and the light that cancels it after traveling through the film? Express your answer in nanometers. increase the thickness of this film so that the reflected light cancels. ? For related problem-solving tips and strategies, you may want to view a Video Tutor Solution of Thin- film interference iii. AP = %3D nm Submit Request Answer Part C What is the path difference between the light reflected off the top of the film and the light that cancels it after traveling through the film in wavelengths of the light in the TiO2 film. Express your answer in wavelengths of the light in the film. ? ΔΡ- wavelengths Submit Previous Answers Request Answer X Incorrect; Try Again; 4 attempts remaining
<Homework for Module 14 (weekly assignment, individual score)
Exercise 35.25 - Enhanced - with Solution
4 of 5
I Review I Constants
A uniform film of TiO2, 1036 nm thick and having
index of refraction 2.62, is spread uniformly over
the surface of crown glass of refractive index 1.52.
Light of wavelength 530.0 nm falls at normal
Part A
What is the minimum thickness of TiO2 that you must add so the reflected light cancels as desired?
incidence onto the film from air. You want to
increase the thickness of this film so that the
Express your answer in nanometers.
reflected light cancels.
1 ΑΣφ
For related problem-solving tips and strategies, you
may want to view a Video Tutor Solution of Thin-
film interference iii.
AT =
nm
Submit
Previous Answers Request Answer
X Incorrect; Try Again; 4 attempts remaining
Part B
After you make the adjustment in part A, what is the path difference between the light reflected off the top of the film and
the light that cancels it after traveling through the film?
Express your answer in nanometers.
?
ΔΡ
nm
Submit
Request Answer
Transcribed Image Text:<Homework for Module 14 (weekly assignment, individual score) Exercise 35.25 - Enhanced - with Solution 4 of 5 I Review I Constants A uniform film of TiO2, 1036 nm thick and having index of refraction 2.62, is spread uniformly over the surface of crown glass of refractive index 1.52. Light of wavelength 530.0 nm falls at normal Part A What is the minimum thickness of TiO2 that you must add so the reflected light cancels as desired? incidence onto the film from air. You want to increase the thickness of this film so that the Express your answer in nanometers. reflected light cancels. 1 ΑΣφ For related problem-solving tips and strategies, you may want to view a Video Tutor Solution of Thin- film interference iii. AT = nm Submit Previous Answers Request Answer X Incorrect; Try Again; 4 attempts remaining Part B After you make the adjustment in part A, what is the path difference between the light reflected off the top of the film and the light that cancels it after traveling through the film? Express your answer in nanometers. ? ΔΡ nm Submit Request Answer
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