5)A diffraction grating with 600 lines / mm is used to observe the spectrum from an unknown element. The data below is for first order spectrum. Calculate the wavelengths of lines 1 and 2, in Angstroms. (Lab 12: Diffraction grating) Hint 16,700 Angstroms. Divided Circle Reading d = 1/600 = 0.0016666 mm = %3! Line Left Right 1 310° 278° 335° 254°

Principles of Physics: A Calculus-Based Text
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Chapter27: Wave Optics
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5)A diffraction grating with 600 lines / mm is used to observe the spectrum from an
unknown element. The data below is for first order spectrum. Calculate the
wavelengths of lines 1 and 2, in Angstroms. (Lab 12: Diffraction grating) Hint
16,700 Angstroms.
Divided Circle Reading
d 1/600 = 0.0016666 mm
Line
Left
Right
278°
1
310°
335°
254°
Transcribed Image Text:5)A diffraction grating with 600 lines / mm is used to observe the spectrum from an unknown element. The data below is for first order spectrum. Calculate the wavelengths of lines 1 and 2, in Angstroms. (Lab 12: Diffraction grating) Hint 16,700 Angstroms. Divided Circle Reading d 1/600 = 0.0016666 mm Line Left Right 278° 1 310° 335° 254°
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