Stopping Power for Tungsten

In this paper we report the values of radiative, collisional and total stopping power of electrons (β-) for Tungsten element by using Bethe-Bloch relativistic formula. All related equations were inputted into MathCad2012 using the ionization potential value for Tungsten in the energy range (0.1 - 1...

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Main Authors: Adwan N. H. Al-Ajili, Sabah M. Aman Allah, Rafa A. Abad, Ahmad M. O. Al-Bayti
Format: Article
Language:English
Published: Tikrit University 2023-02-01
Series:Tikrit Journal of Pure Science
Subjects:
Online Access:https://tjpsj.org/index.php/tjps/article/view/954
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author Adwan N. H. Al-Ajili
Sabah M. Aman Allah
Rafa A. Abad
Ahmad M. O. Al-Bayti
author_facet Adwan N. H. Al-Ajili
Sabah M. Aman Allah
Rafa A. Abad
Ahmad M. O. Al-Bayti
author_sort Adwan N. H. Al-Ajili
collection DOAJ
description In this paper we report the values of radiative, collisional and total stopping power of electrons (β-) for Tungsten element by using Bethe-Bloch relativistic formula. All related equations were inputted into MathCad2012 using the ionization potential value for Tungsten in the energy range (0.1 - 10) MeV. The results show that the collisional stopping power dominates radiative stopping power. This is in excellent agreement with the values of Estar in the energy range (0.01 – 3) MeV, but at energy levels greater than 3 MeV the Bethe-Bloch relativistic formula requires some corrections to minimize errors in results.  
format Article
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institution Matheson Library
issn 1813-1662
2415-1726
language English
publishDate 2023-02-01
publisher Tikrit University
record_format Article
series Tikrit Journal of Pure Science
spelling doaj-art-2af353e64c114aedaa4fe8b0cb1583e12025-07-11T16:03:07ZengTikrit UniversityTikrit Journal of Pure Science1813-16622415-17262023-02-0121110.25130/tjps.v21i1.954Stopping Power for Tungsten Adwan N. H. Al-AjiliSabah M. Aman AllahRafa A. AbadAhmad M. O. Al-Bayti In this paper we report the values of radiative, collisional and total stopping power of electrons (β-) for Tungsten element by using Bethe-Bloch relativistic formula. All related equations were inputted into MathCad2012 using the ionization potential value for Tungsten in the energy range (0.1 - 10) MeV. The results show that the collisional stopping power dominates radiative stopping power. This is in excellent agreement with the values of Estar in the energy range (0.01 – 3) MeV, but at energy levels greater than 3 MeV the Bethe-Bloch relativistic formula requires some corrections to minimize errors in results.   https://tjpsj.org/index.php/tjps/article/view/954Bethe-Blochstopping powerradiativecollisionmean excitation energy
spellingShingle Adwan N. H. Al-Ajili
Sabah M. Aman Allah
Rafa A. Abad
Ahmad M. O. Al-Bayti
Stopping Power for Tungsten
Tikrit Journal of Pure Science
Bethe-Bloch
stopping power
radiative
collision
mean excitation energy
title Stopping Power for Tungsten
title_full Stopping Power for Tungsten
title_fullStr Stopping Power for Tungsten
title_full_unstemmed Stopping Power for Tungsten
title_short Stopping Power for Tungsten
title_sort stopping power for tungsten
topic Bethe-Bloch
stopping power
radiative
collision
mean excitation energy
url https://tjpsj.org/index.php/tjps/article/view/954
work_keys_str_mv AT adwannhalajili stoppingpowerfortungsten
AT sabahmamanallah stoppingpowerfortungsten
AT rafaaabad stoppingpowerfortungsten
AT ahmadmoalbayti stoppingpowerfortungsten