3.) An emission spectrum produces light at three visible wavelengths. In order to separate the colors, the light is shown through a diffraction grating with a slit space a = 0.002 mm where is spreads into lines of yellow, blue and red as shown in the figure to the right. Match the color (yellow, blue or red) with the line (A, B, C or D) from the figure that will have that color. Yellow will be line: Blue will be line_ Red will be line_ 4.). If the wavelength of the yellow light is 580 nm, find the angle of diffraction for that color light.

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3.) An emission spectrum produces light at three
visible wavelengths. In order to separate the colors,
the light is shown through a diffraction grating with a
slit space a = 0.002 mm where is spreads into lines
of yellow, blue and red as shown in the figure to the
right. Match the color (yellow, blue or red) with the
line (A, B, C or D) from the figure that will have that
color.
Blue will be line
Yellow will be line:
Red will be line_
4.). If the wavelength of the yellow light is 580 nm, find the angle of diffraction for
that color light.
Transcribed Image Text:3.) An emission spectrum produces light at three visible wavelengths. In order to separate the colors, the light is shown through a diffraction grating with a slit space a = 0.002 mm where is spreads into lines of yellow, blue and red as shown in the figure to the right. Match the color (yellow, blue or red) with the line (A, B, C or D) from the figure that will have that color. Blue will be line Yellow will be line: Red will be line_ 4.). If the wavelength of the yellow light is 580 nm, find the angle of diffraction for that color light.
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