The attached figure shows an x-ray spectrum from molybdenum (Z-42). Use Moseley's law as given in the lecture, 1/AK R(Z-1)2(1/1²-1/n²), to find the Ko and Kg theoretical x-ray wavelengths for molybdenum and compare the results with those shown in the figure. Explain why the L-series x-rays don't show up in that graph.

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5
6
À (x10-² nm)
7
8
9
10
Relative intensity
Mo
9
9
12
vith
→ To 15.2
→ To 37.2
Transcribed Image Text:5 6 À (x10-² nm) 7 8 9 10 Relative intensity Mo 9 9 12 vith → To 15.2 → To 37.2
The attached figure shows an x-ray spectrum from molybdenum (Z=42). Use Moseley's law as given in the lecture,
1/AK = R(Z-1)²(1/1² - 1/n²), to find the K and Kg theoretical x-ray wavelengths for molybdenum and compare the results with
those shown in the figure. Explain why the L-series x-rays don't show up in that graph.
Transcribed Image Text:The attached figure shows an x-ray spectrum from molybdenum (Z=42). Use Moseley's law as given in the lecture, 1/AK = R(Z-1)²(1/1² - 1/n²), to find the K and Kg theoretical x-ray wavelengths for molybdenum and compare the results with those shown in the figure. Explain why the L-series x-rays don't show up in that graph.
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