Electronic configuration of vanadium carbide (VC)

In this paper we used renormalized free atom model to study the electronic configuration of vanadium carbide compound. The theoretical values were obtained after finding the values of each element separately and using the superposition model to find the best electronic arrangement. These results we...

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Main Authors: Fareed M. Mohammed, Sameh H. Salih, Abdulkader A. Hassan, Shalash A. Mohammed
Format: Article
Language:English
Published: Tikrit University 2018-05-01
Series:Tikrit Journal of Pure Science
Subjects:
Online Access:https://tjpsj.org/index.php/tjps/article/view/506
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author Fareed M. Mohammed
Sameh H. Salih
Abdulkader A. Hassan
Shalash A. Mohammed
author_facet Fareed M. Mohammed
Sameh H. Salih
Abdulkader A. Hassan
Shalash A. Mohammed
author_sort Fareed M. Mohammed
collection DOAJ
description In this paper we used renormalized free atom model to study the electronic configuration of vanadium carbide compound. The theoretical values were obtained after finding the values of each element separately and using the superposition model to find the best electronic arrangement. These results were compared with experimental values measured by using high energy (661.65 keV)ɣ-radiations from a 137Cs source. We observed  two things, first; if half the density of the electronic momentum of the compound is concentrated in vanadium we get the electronic order (2s1-2p1.5)C+(3d+5.5-4s1)V. second, if full the density of the electronic momentum of the compound is concentrated in vanadium we got the electron order (2s1-2p0)C+(3d+7-4s1)V .The best results out of these were when the full electron transfer from carbon to vanadium   occurs.
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issn 1813-1662
2415-1726
language English
publishDate 2018-05-01
publisher Tikrit University
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series Tikrit Journal of Pure Science
spelling doaj-art-54d60e9f4c3e4be890058c7705fbe7962025-08-20T02:37:06ZengTikrit UniversityTikrit Journal of Pure Science1813-16622415-17262018-05-0123310.25130/tjps.v23i3.506Electronic configuration of vanadium carbide (VC)Fareed M. MohammedSameh H. SalihAbdulkader A. HassanShalash A. Mohammed In this paper we used renormalized free atom model to study the electronic configuration of vanadium carbide compound. The theoretical values were obtained after finding the values of each element separately and using the superposition model to find the best electronic arrangement. These results were compared with experimental values measured by using high energy (661.65 keV)ɣ-radiations from a 137Cs source. We observed  two things, first; if half the density of the electronic momentum of the compound is concentrated in vanadium we get the electronic order (2s1-2p1.5)C+(3d+5.5-4s1)V. second, if full the density of the electronic momentum of the compound is concentrated in vanadium we got the electron order (2s1-2p0)C+(3d+7-4s1)V .The best results out of these were when the full electron transfer from carbon to vanadium   occurs. https://tjpsj.org/index.php/tjps/article/view/506Electron momentum densityImpulse ApproximationCompton Scattering
spellingShingle Fareed M. Mohammed
Sameh H. Salih
Abdulkader A. Hassan
Shalash A. Mohammed
Electronic configuration of vanadium carbide (VC)
Tikrit Journal of Pure Science
Electron momentum density
Impulse Approximation
Compton Scattering
title Electronic configuration of vanadium carbide (VC)
title_full Electronic configuration of vanadium carbide (VC)
title_fullStr Electronic configuration of vanadium carbide (VC)
title_full_unstemmed Electronic configuration of vanadium carbide (VC)
title_short Electronic configuration of vanadium carbide (VC)
title_sort electronic configuration of vanadium carbide vc
topic Electron momentum density
Impulse Approximation
Compton Scattering
url https://tjpsj.org/index.php/tjps/article/view/506
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AT abdulkaderahassan electronicconfigurationofvanadiumcarbidevc
AT shalashamohammed electronicconfigurationofvanadiumcarbidevc