8. (1) Considering the intensity patterns from 6-slits diffraction grating, what is the key factor making the features shown in Fig.P8-a different from that of Fig.P8-b? Explain in detail. Notice that D is the width of each slit and d is the spacing of neighboring slits. I(0) N= 6 - sine A A A 2A 6d 3l 2d 3d 5A A 21 m = 1 (or, m = -1) m = 1 m = 0 6d d Fig.P8-a Fig.P8-b (2) Compose a program (or software commands, macros) to plot the_diffraction profile: I(e) vs sine, for the case where d = 4D and N= 6. PS. 1= dr.

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8. (1) Considering the intensity patterns from 6-slits diffraction grating, what is the key factor
making the features shown in Fig.P8-a different from that of Fig.P8-b? Explain in detail.
Notice that D is the width of each slit and d is the spacing of neighboring slits.
I(0)
N = 6
- sine
A 21
3d 2d 3d
m = 0
m = 1
m =1
6d
P P9
(or, m = -1)
Fig.P8-a
Fig.P8-b
(2) Compose a program (or software commands, macros) to plot the diffraction profile:
PS. 1= dr.
I(0) vs sin 0, for the case where d = 4D and N= 6.
Transcribed Image Text:8. (1) Considering the intensity patterns from 6-slits diffraction grating, what is the key factor making the features shown in Fig.P8-a different from that of Fig.P8-b? Explain in detail. Notice that D is the width of each slit and d is the spacing of neighboring slits. I(0) N = 6 - sine A 21 3d 2d 3d m = 0 m = 1 m =1 6d P P9 (or, m = -1) Fig.P8-a Fig.P8-b (2) Compose a program (or software commands, macros) to plot the diffraction profile: PS. 1= dr. I(0) vs sin 0, for the case where d = 4D and N= 6.
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