Protons of kinetic energy 1.00 GeV were diffracted by oxygen nucler. which have a radius of 3.0 fm, to produce the data shown in Figure 4o. Calculate the expected angles where the first three diffraction minima should appear.

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H.W
Protons of kinetic energy 1.00 GeV were diffracted by oxygen nuele
which have a radius of 3.0 fm, to produce the data shown in Figure 4.0.
Calculate the expected angles where the first three diffraction minima
should appear.
101
10
101
102
10
104
10
106
12 16 20 24 28
Scattering angle (degrees)
4 8
FIGURE 4.8 Diffraction of 1-GeV
protons by oxygen nuclei. The pat-
tern of maxima and minima is similar
to that of single-slit diffraction of
light waves. [Source: H. Palevsky et
al., Physical Review Letters 18, 1200
(1967).J
Intensity of scattered protons
Transcribed Image Text:H.W Protons of kinetic energy 1.00 GeV were diffracted by oxygen nuele which have a radius of 3.0 fm, to produce the data shown in Figure 4.0. Calculate the expected angles where the first three diffraction minima should appear. 101 10 101 102 10 104 10 106 12 16 20 24 28 Scattering angle (degrees) 4 8 FIGURE 4.8 Diffraction of 1-GeV protons by oxygen nuclei. The pat- tern of maxima and minima is similar to that of single-slit diffraction of light waves. [Source: H. Palevsky et al., Physical Review Letters 18, 1200 (1967).J Intensity of scattered protons
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