Question: Intensity as a function of position on screen X (cm) -0 8 6 4 -2 0 2 4 6 8 10 Slit width (micrometers) 8.0

 Intensity as a function of position on screen X (cm) -08 6 4 -2 0 2 4 6 8 10 Slit width(micrometers) 8.0 16.0 12.0 Distance between slits (micrometers) 20.0 72.0 36.0 Notethat vou can scroll inside the simulation window to access all ofthe controls at the bottom. =II!!III screen LTINS H4EEEENEE -0 8 64 -2 0 2 4 6 8 10 Slit width (micrometers) 8.016.0 8 Distance between slits (micrometers) 20.0 72.0 36.0 Distance to thescreen (meters) 1.0 2.0 2 Color of light: Red Green Violet Typeof opening: Single slit ~ Double source Double slit rthat you can

Intensity as a function of position on screen X (cm) -0 8 6 4 -2 0 2 4 6 8 10 Slit width (micrometers) 8.0 16.0 12.0 Distance between slits (micrometers) 20.0 72.0 36.0 Note that vou can scroll inside the simulation window to access all of the controls at the bottom. =II!!III screen LTINS H4EEEENEE -0 8 6 4 -2 0 2 4 6 8 10 Slit width (micrometers) 8.0 16.0 8 Distance between slits (micrometers) 20.0 72.0 36.0 Distance to the screen (meters) 1.0 2.0 2 Color of light: Red Green Violet Type of opening: Single slit ~ Double source Double slit rthat you can scroll inside the simulation window to access all of the controls at the bottom. These are the wavelengths the simulation uses: Red: 650 nm; Green: 520 nm; Violet: 400 nm. @ Part (a) o Homework Answered Due Apr23rd, 12:15 PM First, look at the single slit, and use violet light. Given the ranges on the sliders available with the simulation, what is the farthest distance from the center of the screen that the first zero in the single-slit diffraction pattern can be? You can use the simulation to check your answer, but you should calculate the answer so you get the required accuracy of three significant figures. Also, note the units. (Basically, we're looking for the x value of the first minimum in the pattern.) X= cm Type your numeric answer and submit 2577 X You are incorrect Answered - Incorrect 2 attempts left \fNote that you should get a different color of light for the next question, just so you have to think about the effect of changing color. @ Part (b) o Homework Answered Due Apr23rd, 12:15 PM Now, look at the double slit, and use red light. Given the ranges on the sliders available with the simulation, what is the smallest distance from the center of the screen that the first zero in the double-slit diffraction pattern can be? You can use the simulation to check your answer, but you should calculate the answer so you get the required accuracy of three significant figures. Also, note the units. (Basically, we're looking for the x value of the first minimum in the pattern.) X= cm Type your numeric answer and submit 0.361 X You are incorrect Answered - Incorrect 4 attempts left For single slit Experiment; position of math minime from central maxima is given by ; y = MAD 150 Jor m = 1 ; y s ,. 400x10 9 8 x 10 6 4 1 = 01 1 m or 4 = 10 cm ( cAws ) y , = 10.0 emFor single slit Experiment; position of math minime from central maxima is given by ; y = MAD 150 Jor m = 1 ; y s ,. 400x10 9 8 x 10 6 4 1 = 01 1 m or 4 = 10 cm ( cAws ) y , = 10.0 emIntensity as a function of position on screen screen screen x (cm) -10 -8 -6 -4 10 slit(s) Slit width (micrometers) 8.0 16.0 8 Distance between slits (micrometers) 20.0 72.0 20 Distance to the screen (meters) 1.0 2.0 2 Color of light: | Red Green Violet Type of opening: | Single slit Double source Double slitIntensity as a function of position on screen T 1 1 N O LA -10 -8 0 Slit width (micrometers) g () e 1 () 16 Distance between slits (micrometers) 20, ( ) 7> ( 72 Distance to the screen (meters) 1.0@ 2.0 1 Color of light: | Red || Green || Violet | Type of opening: | Single slit || Double source || Double slit X (cm)

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