büt5. Figure below shows the first four peaks of the x-ray diffraction pattern for a typical solid solution, with FCC crystal structure, average atomic weight of 102g/mol and density of 2.84 g/cm3; monochromatic x-radiation having a wavelength of 0.1542 nm was used. (a) For the first peak, determine the approximate atomic radius of atoms in the crystalline structure. (b) Determine the interplanar spacing for each of the peaks. 7000 (111) 6000 5000 (200) 4000 3000 2000 (311) (220) 1000 20 30 40 50 60 70 80 20 (degree) Intensity (CPS)

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5 - büt5. Figure below shows the first four
peaks of the x-ray diffraction pattern for a
typical solid solution, with FCC crystal
structure, average atomic weight of
102g/mol and density of 2.84 g/cm3;
monochromatic x-radiation having a
wavelength of 0.1542 nm was used.
(a) For the first peak, determine the
approximate atomic radius of atoms in
the crystalline structure.
(b) Determine the interplanar spacing for
each of the peaks.
7000
(111)
6000
5000
(200)
4000
3000
2000
(311)
(220)
1000
20
30
40
50
60
70 80
20 (degree)
Intensity (CPS)
Transcribed Image Text:5 - büt5. Figure below shows the first four peaks of the x-ray diffraction pattern for a typical solid solution, with FCC crystal structure, average atomic weight of 102g/mol and density of 2.84 g/cm3; monochromatic x-radiation having a wavelength of 0.1542 nm was used. (a) For the first peak, determine the approximate atomic radius of atoms in the crystalline structure. (b) Determine the interplanar spacing for each of the peaks. 7000 (111) 6000 5000 (200) 4000 3000 2000 (311) (220) 1000 20 30 40 50 60 70 80 20 (degree) Intensity (CPS)
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