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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Tikrit University
2019-01-01
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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 |
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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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format | Article |
id | doaj-art-e54fb58bb4c74ea2b50c6711ca1c64d1 |
institution | Matheson Library |
issn | 1813-1662 2415-1726 |
language | English |
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 |