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Year 2017, Volume: 5 Issue: 1, 431 - 433, 30.06.2017
https://doi.org/10.17261/Pressacademia.2017.620

Abstract

References

  • Han, I., Demir, L. 2009. “Mass attenuation coefficients, effective atomic and electron numbers of Ti and Ni alloys”,Radiation. Measurement, vol.44 no. 1 ,pp. 289-294.
  • Speller, R. D., Horrocks, J. A. 1991,” Photon scattering--a "new' source of information in medicine and biology?” Physics in Medicine and Biology .Vol.36, no.,pp.1.
  • Webster, D. J., Lillicrap, S. C.1985,”Coherent-Compton scattering for the assessment of bone mineral content using heavily filtered X-ray beams” ,Physics in Medicine and Biology, volume 30, no. 6, pp. 531-539.
  • Cooper,M.J., Rollason, A.J., Tuxworth, R.W. 1982,” Gamma-ray scattering studies of composition variations in alloys” J. Phys. E: Sci. Instrum,vol.15, pp. 568-572
  • Gigante,G.E., . Pedraza, L.J, Sciuti, S. 1985,” Analysis of metal alloys by Rayleigh to Compton ratios and x-ray fluorescence peaks in the 50 to 122 keV energy range” Nucl. Inst. Meth, vol.12, pp. 229–234
  • Shakeshaft,J., Morgan H.M., Lillicrap, S.C.1997, “Gamma-ray scattering for fat fraction measurement”, Physics in Medicine and Biology, vol. 42, no.7,pp. 1403-1413.

DETERMINATION OF ENHANCEMENT EFFECTS AT THE COMPTON TO COHERENT SCATTERING INTENSITIES X-RAYS USING FE-CU AND FE-ZN BINARY COMPOUNDS WITH WDXRF

Year 2017, Volume: 5 Issue: 1, 431 - 433, 30.06.2017
https://doi.org/10.17261/Pressacademia.2017.620

Abstract

Matrix enhancement effects have
been examined with scattered X-rays by using WDXRF system for Fe-Cu and Fe-Zn
binary compounds. Fe as analyte and elements which some of them the K
absorption edge just below the characteristic K X-ray energies of the analit
(Fe) as matrix have been chosen. Pure and binary with Fe ratio ranging from 10%
to 90% samples were prepared with these elements. These samples have been
analyzed in WDXRF system. At the end of measurement, the coherent and Compton
scattering X-rays data of Rh Kα Xrays from these samples have been obtained.
Matrix enhancement effects have been examined by calculating coherent / Compton
scattered X-rays intensity ratio.



 

References

  • Han, I., Demir, L. 2009. “Mass attenuation coefficients, effective atomic and electron numbers of Ti and Ni alloys”,Radiation. Measurement, vol.44 no. 1 ,pp. 289-294.
  • Speller, R. D., Horrocks, J. A. 1991,” Photon scattering--a "new' source of information in medicine and biology?” Physics in Medicine and Biology .Vol.36, no.,pp.1.
  • Webster, D. J., Lillicrap, S. C.1985,”Coherent-Compton scattering for the assessment of bone mineral content using heavily filtered X-ray beams” ,Physics in Medicine and Biology, volume 30, no. 6, pp. 531-539.
  • Cooper,M.J., Rollason, A.J., Tuxworth, R.W. 1982,” Gamma-ray scattering studies of composition variations in alloys” J. Phys. E: Sci. Instrum,vol.15, pp. 568-572
  • Gigante,G.E., . Pedraza, L.J, Sciuti, S. 1985,” Analysis of metal alloys by Rayleigh to Compton ratios and x-ray fluorescence peaks in the 50 to 122 keV energy range” Nucl. Inst. Meth, vol.12, pp. 229–234
  • Shakeshaft,J., Morgan H.M., Lillicrap, S.C.1997, “Gamma-ray scattering for fat fraction measurement”, Physics in Medicine and Biology, vol. 42, no.7,pp. 1403-1413.
There are 6 citations in total.

Details

Journal Section Articles
Authors

Elif Boydas

Demet Yilmaz

Mustafa Gokalp Boydas

Publication Date June 30, 2017
Published in Issue Year 2017 Volume: 5 Issue: 1

Cite

APA Boydas, E., Yilmaz, D., & Boydas, M. G. (2017). DETERMINATION OF ENHANCEMENT EFFECTS AT THE COMPTON TO COHERENT SCATTERING INTENSITIES X-RAYS USING FE-CU AND FE-ZN BINARY COMPOUNDS WITH WDXRF. PressAcademia Procedia, 5(1), 431-433. https://doi.org/10.17261/Pressacademia.2017.620
AMA Boydas E, Yilmaz D, Boydas MG. DETERMINATION OF ENHANCEMENT EFFECTS AT THE COMPTON TO COHERENT SCATTERING INTENSITIES X-RAYS USING FE-CU AND FE-ZN BINARY COMPOUNDS WITH WDXRF. PAP. June 2017;5(1):431-433. doi:10.17261/Pressacademia.2017.620
Chicago Boydas, Elif, Demet Yilmaz, and Mustafa Gokalp Boydas. “DETERMINATION OF ENHANCEMENT EFFECTS AT THE COMPTON TO COHERENT SCATTERING INTENSITIES X-RAYS USING FE-CU AND FE-ZN BINARY COMPOUNDS WITH WDXRF”. PressAcademia Procedia 5, no. 1 (June 2017): 431-33. https://doi.org/10.17261/Pressacademia.2017.620.
EndNote Boydas E, Yilmaz D, Boydas MG (June 1, 2017) DETERMINATION OF ENHANCEMENT EFFECTS AT THE COMPTON TO COHERENT SCATTERING INTENSITIES X-RAYS USING FE-CU AND FE-ZN BINARY COMPOUNDS WITH WDXRF. PressAcademia Procedia 5 1 431–433.
IEEE E. Boydas, D. Yilmaz, and M. G. Boydas, “DETERMINATION OF ENHANCEMENT EFFECTS AT THE COMPTON TO COHERENT SCATTERING INTENSITIES X-RAYS USING FE-CU AND FE-ZN BINARY COMPOUNDS WITH WDXRF”, PAP, vol. 5, no. 1, pp. 431–433, 2017, doi: 10.17261/Pressacademia.2017.620.
ISNAD Boydas, Elif et al. “DETERMINATION OF ENHANCEMENT EFFECTS AT THE COMPTON TO COHERENT SCATTERING INTENSITIES X-RAYS USING FE-CU AND FE-ZN BINARY COMPOUNDS WITH WDXRF”. PressAcademia Procedia 5/1 (June 2017), 431-433. https://doi.org/10.17261/Pressacademia.2017.620.
JAMA Boydas E, Yilmaz D, Boydas MG. DETERMINATION OF ENHANCEMENT EFFECTS AT THE COMPTON TO COHERENT SCATTERING INTENSITIES X-RAYS USING FE-CU AND FE-ZN BINARY COMPOUNDS WITH WDXRF. PAP. 2017;5:431–433.
MLA Boydas, Elif et al. “DETERMINATION OF ENHANCEMENT EFFECTS AT THE COMPTON TO COHERENT SCATTERING INTENSITIES X-RAYS USING FE-CU AND FE-ZN BINARY COMPOUNDS WITH WDXRF”. PressAcademia Procedia, vol. 5, no. 1, 2017, pp. 431-3, doi:10.17261/Pressacademia.2017.620.
Vancouver Boydas E, Yilmaz D, Boydas MG. DETERMINATION OF ENHANCEMENT EFFECTS AT THE COMPTON TO COHERENT SCATTERING INTENSITIES X-RAYS USING FE-CU AND FE-ZN BINARY COMPOUNDS WITH WDXRF. PAP. 2017;5(1):431-3.

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