9. Figure shows the first five peaks of the x-ray diffraction pattern for tungsten, which has a BCC crystal structure; monochromatic x-radiation having a wavelength of 0.1542 nm was used. (a) Index (i.e., give h, k, and / indices) for each of these peaks. (b) Determine the interplanar spacing for each of the peaks. (c) For each peak, determine the atomic radius for W. 0.0 20.0 40.0 60.0 80.0 100.0 Diffraction angle 20 Intensity

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
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9. Figure shows the first five peaks of the x-ray diffraction pattern for tungsten, which has a
BCC crystal structure; monochromatic x-radiation having a wavelength of 0.1542 nm was
used. (a) Index (i.e., give h, k, and I indices) for each of these peaks. (b) Determine the
interplanar spacing for each of the peaks. (c) For each peak, determine the atomic radius
for W.
0.0
20.0
40.0
60.0
80.0
100.0
Diffraction angle 20
Intensity
Transcribed Image Text:9. Figure shows the first five peaks of the x-ray diffraction pattern for tungsten, which has a BCC crystal structure; monochromatic x-radiation having a wavelength of 0.1542 nm was used. (a) Index (i.e., give h, k, and I indices) for each of these peaks. (b) Determine the interplanar spacing for each of the peaks. (c) For each peak, determine the atomic radius for W. 0.0 20.0 40.0 60.0 80.0 100.0 Diffraction angle 20 Intensity
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