IP When blue light with a wavelength of 452 nm illuminates a diffraction grating, it produces a first- order principal maximum but no second-order maximum. Part A Explain the absence of higher-order principal maxima.
IP When blue light with a wavelength of 452 nm illuminates a diffraction grating, it produces a first- order principal maximum but no second-order maximum. Part A Explain the absence of higher-order principal maxima.
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data:image/s3,"s3://crabby-images/cbb1c/cbb1cdaf3112629b745f64b7e57687e9c4d1fd95" alt="Predict/Calculate Problem 28.72
IP When blue light with a wavelength of 452 nm illuminates a diffraction grating, it produces a first-
order principal maximum but no second-order maximum.
Part A
Explain the absence of higher-order principal maxima.
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3800 Character(s) remaining
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Part B
What is the maximum spacing between lines on this grating?
d =
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Transcribed Image Text:Predict/Calculate Problem 28.72
IP When blue light with a wavelength of 452 nm illuminates a diffraction grating, it produces a first-
order principal maximum but no second-order maximum.
Part A
Explain the absence of higher-order principal maxima.
Essay answers are limited to about 500 words (3800 characters maximum, including spaces).
3800 Character(s) remaining
Submit
Request Answer
Part B
What is the maximum spacing between lines on this grating?
d =
Submit
Request Answer
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