Calculation of The Imaginary Part of Atomic Form Factor For X-ray In Nickel

In the present study, we calculated the imaginary part of the x-ray scattering factor of nickel based on the principles of quantum mechanics to find a wave function that describes the electronic state of atoms by approximate methods, observed the study suggested that in both low energy values , and...

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Main Authors: Ahmed Raheem Ahmed, Muhsin Hasan Ali
Format: Article
Language:English
Published: Tikrit University 2019-01-01
Series:Tikrit Journal of Pure Science
Subjects:
Online Access:https://tjpsj.org/index.php/tjps/article/view/565
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author Ahmed Raheem Ahmed
Muhsin Hasan Ali
author_facet Ahmed Raheem Ahmed
Muhsin Hasan Ali
author_sort Ahmed Raheem Ahmed
collection DOAJ
description In the present study, we calculated the imaginary part of the x-ray scattering factor of nickel based on the principles of quantum mechanics to find a wave function that describes the electronic state of atoms by approximate methods, observed the study suggested that in both low energy values , and at high energy values , the imaginary part is approximately zero, this means that the electrons are intensely connected to the atom, where in the spectrum the photon energies are approximately equal to the electron bonding energy  we note the study pointed out that the imaginary part of the atomic scattering factor become  prominent and the electron becomes highly absorbent, the relative accuracy varies within range (0.03-0.22)%, and there was also a good agreement between the behavior we obtained for the imaginary part of the atomic scattering factor and the behavior that was calculated using other models.
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publishDate 2019-01-01
publisher Tikrit University
record_format Article
series Tikrit Journal of Pure Science
spelling doaj-art-e54fb58bb4c74ea2b50c6711ca1c64d12025-07-14T01:51:03ZengTikrit UniversityTikrit Journal of Pure Science1813-16622415-17262019-01-01231010.25130/tjps.v23i10.565Calculation of The Imaginary Part of Atomic Form Factor For X-ray In NickelAhmed Raheem AhmedMuhsin Hasan Ali In the present study, we calculated the imaginary part of the x-ray scattering factor of nickel based on the principles of quantum mechanics to find a wave function that describes the electronic state of atoms by approximate methods, observed the study suggested that in both low energy values , and at high energy values , the imaginary part is approximately zero, this means that the electrons are intensely connected to the atom, where in the spectrum the photon energies are approximately equal to the electron bonding energy  we note the study pointed out that the imaginary part of the atomic scattering factor become  prominent and the electron becomes highly absorbent, the relative accuracy varies within range (0.03-0.22)%, and there was also a good agreement between the behavior we obtained for the imaginary part of the atomic scattering factor and the behavior that was calculated using other models. https://tjpsj.org/index.php/tjps/article/view/565NickelThe imaginary part of atomic scattering factor
spellingShingle Ahmed Raheem Ahmed
Muhsin Hasan Ali
Calculation of The Imaginary Part of Atomic Form Factor For X-ray In Nickel
Tikrit Journal of Pure Science
Nickel
The imaginary part of atomic scattering factor
title Calculation of The Imaginary Part of Atomic Form Factor For X-ray In Nickel
title_full Calculation of The Imaginary Part of Atomic Form Factor For X-ray In Nickel
title_fullStr Calculation of The Imaginary Part of Atomic Form Factor For X-ray In Nickel
title_full_unstemmed Calculation of The Imaginary Part of Atomic Form Factor For X-ray In Nickel
title_short Calculation of The Imaginary Part of Atomic Form Factor For X-ray In Nickel
title_sort calculation of the imaginary part of atomic form factor for x ray in nickel
topic Nickel
The imaginary part of atomic scattering factor
url https://tjpsj.org/index.php/tjps/article/view/565
work_keys_str_mv AT ahmedraheemahmed calculationoftheimaginarypartofatomicformfactorforxrayinnickel
AT muhsinhasanali calculationoftheimaginarypartofatomicformfactorforxrayinnickel