Unpolarized light passes through a vertically polarized film and then passes through a second polarized film whose axis is tilted 60 degrees above horizontal. This light then passes through a traditional Young's Double slit set up with slit separation of 0.25 cm and sit width of 0.5mm. This creates both an interference pattern and a diffraction pattern on a screen 1m away. The frequency of the light is known to be 6E+14 Find the number of side orders of the interference pattern that can be found in the central maxima of the diffraction pattern. Remember the patterns spread both in the positive and negative y direction Answer as a whole number.
Unpolarized light passes through a vertically polarized film and then passes through a second polarized film whose axis is tilted 60 degrees above horizontal. This light then passes through a traditional Young's Double slit set up with slit separation of 0.25 cm and sit width of 0.5mm. This creates both an interference pattern and a diffraction pattern on a screen 1m away. The frequency of the light is known to be 6E+14 Find the number of side orders of the interference pattern that can be found in the central maxima of the diffraction pattern. Remember the patterns spread both in the positive and negative y direction Answer as a whole number.
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Transcribed Image Text:QUESTION 10
Unpolarized light passes through a vertically polarized film and then passes through a second polarized film whose axis is tilted 60 degrees above
horizontal. This light then passes through a traditional Young's Double slit set up with slit separation of 0.25 cm and slit width of 0.5mm. This creates both an
interference pattern and a diffraction pattern on a screen 1m away. The frequency of the light is known to be 6E+14
Find the number of side orders of the interference pattern that can be found in the central maxima of the diffraction pattern. Remember the patterns spread
both in the positive and negative y direction. Answer as a whole number.
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