2) a) A monochromator is used as shown in the setup below to obtain a single wavelength 2 = 1.5 Å X-ray from X-rays emitted from an X-ray source. The monochromator is made o Germanium single crystal. The Miller index of the planes in this Germanium single crystal i (111) and the distance between the planes is di11 = 1.2 Å. What is the value of th monochromator angle (0)? (scattared X-ras) SC Saçılan X-ışını Sincedent X-ray) Saçılma Açısı Sc 20 (scottering angle Gelen X-ışını Geliş Açısı jeliş Dogrultusu direction of arrival Kristal Düzlemleri (andeofincidence) (crystal planes) b) Calculate the energy of the X-ray with wavelength à = 1.5 Å in eV.

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2) a) A monochromator is used as shown in the setup below to obtain a single wavelength
2 = 1.5 Å X-ray from X-rays emitted from an X-ray source. The monochromator is made of
Germanium single crystal. The Miller index of the planes in this Germanium single crystal is
(111) and the distance between the planes is d11 = 1.2 Å. What is the value of the
monochromator angle (0)?
(scottered X-ray)
Saçılan X-ışını
elincedent X-ray)
s )
(scattering angle
Sacılma Açısı
Gelen X-Işını
Geliş Açısı
Eieliş Dogrultusu
(andeofincidence)
direction of arrival)
Kristal Düzlemleri
(crystal planes)
b) Calculate the energy of the X-ray with wavelength 2 = 1.5 Å in eV.
Transcribed Image Text:2) a) A monochromator is used as shown in the setup below to obtain a single wavelength 2 = 1.5 Å X-ray from X-rays emitted from an X-ray source. The monochromator is made of Germanium single crystal. The Miller index of the planes in this Germanium single crystal is (111) and the distance between the planes is d11 = 1.2 Å. What is the value of the monochromator angle (0)? (scottered X-ray) Saçılan X-ışını elincedent X-ray) s ) (scattering angle Sacılma Açısı Gelen X-Işını Geliş Açısı Eieliş Dogrultusu (andeofincidence) direction of arrival) Kristal Düzlemleri (crystal planes) b) Calculate the energy of the X-ray with wavelength 2 = 1.5 Å in eV.
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